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    <title>Recent ucolick items</title>
    <link>https://escholarship.org/uc/ucolick/rss</link>
    <description>Recent eScholarship items from UC Observatories</description>
    <pubDate>Sat, 5 Sep 2026 16:53:15 +0000</pubDate>
    <item>
      <title>Signatures of a Tidally Induced Spiral Arm at the Anticenter of the Milky Way and a Kinematically Extended Anticenter Stream Using DESI Data Release 2</title>
      <link>https://escholarship.org/uc/item/1524x8cw</link>
      <description>Using the Dark Energy Spectroscopic Instrument (DESI) Milky Way Survey, we examine the six-dimensional space of the anticenter region of the Milky Way stellar disk (150° &amp;lt; Galactic longitude &amp;lt; 220°) using 61,883 main-sequence turnoff stars. We focus on two well-known stellar overdensities in the anticenter: the Monoceros Ring (MRi) and Anticenter Stream (ACS). We find that the MRi overdensity has kinematic signatures consistent with a tidally induced spiral arm, a type of dynamic spiral arm created by an interaction with a satellite galaxy, most likely the Sagittarius dwarf spheroidal galaxy (Sgr). We use the kinematics of the MRi to calculate the two most recent passage times of Sgr, finding 0.25 ± 0.09 Gyr and 1.10 ± 0.23 Gyr from the present day. We validate that the ACS is kinematically decoupled from the MRi because they are moving in opposite radial and vertical directions. We find that the kinematics associated with the ACS extends beyond our defined overdensity....</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/1524x8cw</guid>
      <pubDate>Tue, 4 Aug 2026 00:00:00 +0000</pubDate>
      <author>
        <name>Lambert, Mika</name>
        <uri>https://orcid.org/0000-0002-2527-8899</uri>
      </author>
      <author>
        <name>Rockosi, Constance M</name>
      </author>
      <author>
        <name>Koposov, Sergey E</name>
      </author>
      <author>
        <name>Li, Ting S</name>
      </author>
      <author>
        <name>Valluri, Monica</name>
      </author>
      <author>
        <name>Beraldo e Silva, Leandro</name>
      </author>
      <author>
        <name>Li, Songting</name>
      </author>
      <author>
        <name>Amarante, João AS</name>
      </author>
      <author>
        <name>Byström, Amanda</name>
      </author>
      <author>
        <name>Medina, Gustavo E</name>
      </author>
      <author>
        <name>Sandford, Nathan R</name>
      </author>
      <author>
        <name>Najita, Joan</name>
      </author>
      <author>
        <name>Kizhuprakkat, Namitha</name>
      </author>
      <author>
        <name>Aguilar, Jessica N</name>
      </author>
      <author>
        <name>Ahlen, Steven</name>
      </author>
      <author>
        <name>Bianchi, Davide</name>
      </author>
      <author>
        <name>Brooks, David</name>
      </author>
      <author>
        <name>Claybaugh, Todd</name>
        <uri>https://orcid.org/0000-0002-5024-6987</uri>
      </author>
      <author>
        <name>Dawson, Kyle</name>
      </author>
      <author>
        <name>de la Macorra, Axel</name>
      </author>
      <author>
        <name>Doel, Peter</name>
      </author>
      <author>
        <name>Forero-Romero, Jaime E</name>
      </author>
      <author>
        <name>Gaztañaga, Enrique</name>
      </author>
      <author>
        <name>Gontcho, Satya Gontcho A</name>
      </author>
      <author>
        <name>Gutierrez, Gaston</name>
      </author>
      <author>
        <name>Joyce, Richard</name>
      </author>
      <author>
        <name>Kremin, Anthony</name>
        <uri>https://orcid.org/0000-0001-6356-7424</uri>
      </author>
      <author>
        <name>Lamman, Claire</name>
      </author>
      <author>
        <name>Landriau, Martin</name>
        <uri>https://orcid.org/0000-0003-1838-8528</uri>
      </author>
      <author>
        <name>Le Guillou, Laurent</name>
      </author>
      <author>
        <name>Manera, Marc</name>
      </author>
      <author>
        <name>Meisner, Aaron</name>
      </author>
      <author>
        <name>Miquel, Ramon</name>
      </author>
      <author>
        <name>Moustakas, John</name>
      </author>
      <author>
        <name>Myers, Adam</name>
      </author>
      <author>
        <name>Nadathur, Seshadri</name>
      </author>
      <author>
        <name>Percival, Will</name>
      </author>
      <author>
        <name>Prada, Francisco</name>
      </author>
      <author>
        <name>Pérez-Ràfols, Ignasi</name>
      </author>
      <author>
        <name>Rossi, Graziano</name>
      </author>
      <author>
        <name>Sanchez, Eusebio</name>
      </author>
      <author>
        <name>Schlegel, David</name>
        <uri>https://orcid.org/0000-0002-5042-5088</uri>
      </author>
      <author>
        <name>Schubnell, Michael</name>
      </author>
      <author>
        <name>Silber, Joseph H</name>
        <uri>https://orcid.org/0000-0002-3461-0320</uri>
      </author>
      <author>
        <name>Sprayberry, David</name>
      </author>
      <author>
        <name>Tarlé, Gregory</name>
      </author>
      <author>
        <name>Weaver, Benjamin A</name>
      </author>
      <author>
        <name>Zhou, Rongpu</name>
        <uri>https://orcid.org/0000-0001-5381-4372</uri>
      </author>
      <author>
        <name>Zou, Hu</name>
      </author>
    </item>
    <item>
      <title>The Lick AGN Monitoring Project 2016: Velocity-resolved Hβ Lags in Luminous Seyfert Galaxies</title>
      <link>https://escholarship.org/uc/item/44b7j2bq</link>
      <description>We carried out spectroscopic monitoring of 21 low-redshift Seyfert 1 galaxies using the Kast double spectrograph on the 3 m Shane telescope at Lick Observatory from 2016 April to 2017 May. Targeting active galactic nuclei (AGNs) with luminosities of λ L λ (5100 Å) ≈ 1044 erg s−1 and predicted Hβ lags of ∼20–30 days or black hole masses of 107–108.5 M ⊙, our campaign probes luminosity-dependent trends in broad-line region (BLR) structure and dynamics as well as to improve calibrations for single-epoch estimates of quasar black hole masses. Here we present the first results from the campaign, including Hβ emission-line light curves, integrated Hβ lag times (8–30 days) measured against V-band continuum light curves, velocity-resolved reverberation lags, line widths of the broad Hβ components, and virial black hole mass estimates (107.1–108.1 M ⊙). Our results add significantly to the number of existing velocity-resolved lag measurements and reveal a diversity of BLR gas kinematics...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/44b7j2bq</guid>
      <pubDate>Wed, 18 Mar 2026 00:00:00 +0000</pubDate>
      <author>
        <name>Vivian, U</name>
      </author>
      <author>
        <name>Barth, Aaron J</name>
        <uri>https://orcid.org/0000-0002-3026-0562</uri>
      </author>
      <author>
        <name>Vogler, H Alexander</name>
      </author>
      <author>
        <name>Guo, Hengxiao</name>
      </author>
      <author>
        <name>Treu, Tommaso</name>
        <uri>https://orcid.org/0000-0002-8460-0390</uri>
      </author>
      <author>
        <name>Bennert, Vardha N</name>
      </author>
      <author>
        <name>Canalizo, Gabriela</name>
        <uri>https://orcid.org/0000-0003-4693-6157</uri>
      </author>
      <author>
        <name>Filippenko, Alexei V</name>
        <uri>https://orcid.org/0000-0003-3460-0103</uri>
      </author>
      <author>
        <name>Gates, Elinor</name>
        <uri>https://orcid.org/0000-0002-3739-0423</uri>
      </author>
      <author>
        <name>Hamann, Frederick</name>
      </author>
      <author>
        <name>Joner, Michael D</name>
      </author>
      <author>
        <name>Malkan, Matthew A</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
      <author>
        <name>Pancoast, Anna</name>
      </author>
      <author>
        <name>Williams, Peter R</name>
      </author>
      <author>
        <name>Woo, Jong-Hak</name>
      </author>
      <author>
        <name>Abolfathi, Bela</name>
      </author>
      <author>
        <name>Abramson, LE</name>
      </author>
      <author>
        <name>Armen, Stephen F</name>
      </author>
      <author>
        <name>Bae, Hyun-Jin</name>
      </author>
      <author>
        <name>Bohn, Thomas</name>
      </author>
      <author>
        <name>Boizelle, Benjamin D</name>
      </author>
      <author>
        <name>Bostroem, Azalee</name>
      </author>
      <author>
        <name>Brandel, Andrew</name>
      </author>
      <author>
        <name>Brink, Thomas G</name>
      </author>
      <author>
        <name>Channa, Sanyum</name>
      </author>
      <author>
        <name>Cooper, MC</name>
        <uri>https://orcid.org/0000-0003-1371-6019</uri>
      </author>
      <author>
        <name>Cosens, Maren</name>
      </author>
      <author>
        <name>Donohue, Edward</name>
      </author>
      <author>
        <name>Fillingham, Sean P</name>
      </author>
      <author>
        <name>González-Buitrago, Diego</name>
      </author>
      <author>
        <name>Halevi, Goni</name>
      </author>
      <author>
        <name>Halle, Andrew</name>
      </author>
      <author>
        <name>Hood, Carol E</name>
      </author>
      <author>
        <name>Horne, Keith</name>
      </author>
      <author>
        <name>Horst, J Chuck</name>
      </author>
      <author>
        <name>de Kouchkovsky, Maxime</name>
      </author>
      <author>
        <name>Kuhn, Benjamin</name>
      </author>
      <author>
        <name>Kumar, Sahana</name>
      </author>
      <author>
        <name>Leonard, Douglas C</name>
      </author>
      <author>
        <name>Loveland, Donald</name>
      </author>
      <author>
        <name>Manzano-King, Christina</name>
      </author>
      <author>
        <name>McHardy, Ian</name>
      </author>
      <author>
        <name>Michel, Raúl</name>
      </author>
      <author>
        <name>Olaes, Melanie Kae B</name>
      </author>
      <author>
        <name>Park, Daeseong</name>
      </author>
      <author>
        <name>Park, Songyoun</name>
      </author>
      <author>
        <name>Pei, Liuyi</name>
      </author>
      <author>
        <name>Ross, Timothy W</name>
      </author>
      <author>
        <name>Runco, Jordan N</name>
      </author>
      <author>
        <name>Samuel, Jenna</name>
      </author>
      <author>
        <name>Sánchez, Javier</name>
      </author>
      <author>
        <name>Scott, Bryan</name>
      </author>
      <author>
        <name>Sexton, Remington O</name>
      </author>
      <author>
        <name>Shin, Jaejin</name>
      </author>
      <author>
        <name>Shivvers, Isaac</name>
      </author>
      <author>
        <name>Spencer, Chance L</name>
      </author>
      <author>
        <name>Stahl, Benjamin E</name>
      </author>
      <author>
        <name>Stegman, Samantha</name>
      </author>
      <author>
        <name>Stomberg, Isak</name>
      </author>
      <author>
        <name>Valenti, Stefano</name>
        <uri>https://orcid.org/0000-0001-8818-0795</uri>
      </author>
      <author>
        <name>Villafaña, L</name>
      </author>
      <author>
        <name>Walsh, Jonelle L</name>
      </author>
      <author>
        <name>Yuk, Heechan</name>
      </author>
      <author>
        <name>Zheng, WeiKang</name>
      </author>
    </item>
    <item>
      <title>The Keck/DEIMOS Stellar Archive. I. Uniform Velocities and Metallicities for 78 Milky Way Dwarf Galaxies and Globular Clusters</title>
      <link>https://escholarship.org/uc/item/1pm0r30z</link>
      <description>We present a homogeneous spectroscopic dataset of 22,339 stars in 78 Milky Way dwarf galaxy satellites and globular clusters. All data were taken with the Keck II telescope and Deep Extragalactic Imaging Multiobject Spectrograph (DEIMOS) using the 1200G grating (spectral resolution R ≃ 6000). Based on a uniform data reduction of 411 DEIMOS masks, we present a catalog of individual stellar radial velocities, equivalent-width-based [Fe/H] metallicities, and membership estimates. The Milky Way satellites range from MV = 2 to −14 (M⋆ = 101.5–107.5 M⊙); the majority of individual stars presented in these systems have magnitudes between 17 &amp;gt; r &amp;gt; 22. We additionally present redshifts for 2097 compact background galaxies and QSOs in the same magnitude range. The data were reduced to 1D spectra using PypeIt, which provides near Poisson-statistics-level sky subtraction. Radial velocities were determined via dmost, a forward modeling method first presented here, which combines both...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/1pm0r30z</guid>
      <pubDate>Thu, 12 Mar 2026 00:00:00 +0000</pubDate>
      <author>
        <name>Geha, Marla</name>
      </author>
      <author>
        <name>Pelliccia, Debora</name>
        <uri>https://orcid.org/0000-0002-3007-0013</uri>
      </author>
      <author>
        <name>Prochaska, J Xavier</name>
      </author>
      <author>
        <name>Cerny, William</name>
      </author>
      <author>
        <name>Davies, Frederick B</name>
      </author>
      <author>
        <name>Hennawi, Joseph</name>
      </author>
      <author>
        <name>Holden, Brad</name>
        <uri>https://orcid.org/0000-0002-6153-3076</uri>
      </author>
      <author>
        <name>Reichwein, Dusty</name>
      </author>
      <author>
        <name>Westfall, Kyle B</name>
        <uri>https://orcid.org/0000-0003-1809-6920</uri>
      </author>
    </item>
    <item>
      <title>The Lick AGN Monitoring Project 2016: Dynamical Modeling of Velocity-resolved Hβ Lags in Luminous Seyfert Galaxies</title>
      <link>https://escholarship.org/uc/item/5st188ws</link>
      <description>We have modeled the velocity-resolved reverberation response of the Hβ broad emission line in nine Seyfert 1 galaxies from the Lick Active Galactic Nucleus (AGN) Monitoring Project 2016 sample, drawing inferences on the geometry and structure of the low-ionization broad-line region (BLR) and the mass of the central supermassive black hole. Overall, we find that the Hβ BLR is generally a thick disk viewed at low to moderate inclination angles. We combine our sample with prior studies and investigate line-profile shape dependence, such as log10(FWHM/σ) , on BLR structure and kinematics and search for any BLR luminosity-dependent trends. We find marginal evidence for an anticorrelation between the profile shape of the broad Hβ emission line and the Eddington ratio, when using the rms spectrum. However, we do not find any luminosity-dependent trends, and conclude that AGNs have diverse BLR structure and kinematics, consistent with the hypothesis of transient AGN/BLR conditions rather...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/5st188ws</guid>
      <pubDate>Wed, 11 Mar 2026 00:00:00 +0000</pubDate>
      <author>
        <name>Villafaña, Lizvette</name>
      </author>
      <author>
        <name>Williams, Peter R</name>
      </author>
      <author>
        <name>Treu, Tommaso</name>
        <uri>https://orcid.org/0000-0002-8460-0390</uri>
      </author>
      <author>
        <name>Brewer, Brendon J</name>
      </author>
      <author>
        <name>Barth, Aaron J</name>
        <uri>https://orcid.org/0000-0002-3026-0562</uri>
      </author>
      <author>
        <name>Vivian, U</name>
      </author>
      <author>
        <name>Bennert, Vardha N</name>
      </author>
      <author>
        <name>Vogler, H Alexander</name>
      </author>
      <author>
        <name>Guo, Hengxiao</name>
      </author>
      <author>
        <name>Bentz, Misty C</name>
      </author>
      <author>
        <name>Canalizo, Gabriela</name>
        <uri>https://orcid.org/0000-0003-4693-6157</uri>
      </author>
      <author>
        <name>Filippenko, Alexei V</name>
        <uri>https://orcid.org/0000-0003-3460-0103</uri>
      </author>
      <author>
        <name>Gates, Elinor</name>
        <uri>https://orcid.org/0000-0002-3739-0423</uri>
      </author>
      <author>
        <name>Hamann, Frederick</name>
      </author>
      <author>
        <name>Joner, Michael D</name>
      </author>
      <author>
        <name>Malkan, Matthew A</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
      <author>
        <name>Woo, Jong-Hak</name>
      </author>
      <author>
        <name>Abolfathi, Bela</name>
      </author>
      <author>
        <name>Abramson, LE</name>
      </author>
      <author>
        <name>Armen, Stephen F</name>
      </author>
      <author>
        <name>Bae, Hyun-Jin</name>
      </author>
      <author>
        <name>Bohn, Thomas</name>
      </author>
      <author>
        <name>Boizelle, Benjamin D</name>
      </author>
      <author>
        <name>Bostroem, K Azalee</name>
      </author>
      <author>
        <name>Brandel, Andrew</name>
      </author>
      <author>
        <name>Brink, Thomas G</name>
      </author>
      <author>
        <name>Channa, Sanyum</name>
      </author>
      <author>
        <name>Cooper, MC</name>
        <uri>https://orcid.org/0000-0003-1371-6019</uri>
      </author>
      <author>
        <name>Cosens, Maren</name>
      </author>
      <author>
        <name>Donohue, Edward</name>
      </author>
      <author>
        <name>Fillingham, Sean P</name>
      </author>
      <author>
        <name>González-Buitrago, Diego</name>
      </author>
      <author>
        <name>Halevi, Goni</name>
      </author>
      <author>
        <name>Halle, Andrew</name>
      </author>
      <author>
        <name>Hood, Carol E</name>
      </author>
      <author>
        <name>Horne, Keith</name>
      </author>
      <author>
        <name>Horst, J Chuck</name>
      </author>
      <author>
        <name>de Kouchkovsky, Maxime</name>
      </author>
      <author>
        <name>Kuhn, Benjamin</name>
      </author>
      <author>
        <name>Kumar, Sahana</name>
      </author>
      <author>
        <name>Leonard, Douglas C</name>
      </author>
      <author>
        <name>Loveland, Donald</name>
      </author>
      <author>
        <name>Manzano-King, Christina</name>
      </author>
      <author>
        <name>McHardy, Ian</name>
      </author>
      <author>
        <name>Michel, Raúl</name>
      </author>
      <author>
        <name>Olaes, Melanie Kae B</name>
      </author>
      <author>
        <name>Park, Daeseong</name>
      </author>
      <author>
        <name>Park, Songyoun</name>
      </author>
      <author>
        <name>Pei, Liuyi</name>
      </author>
      <author>
        <name>Ross, Timothy W</name>
      </author>
      <author>
        <name>Runco, Jordan N</name>
      </author>
      <author>
        <name>Sánchez, Javier</name>
      </author>
      <author>
        <name>Scott, Bryan</name>
      </author>
      <author>
        <name>Sexton, Remington O</name>
      </author>
      <author>
        <name>Shin, Jaejin</name>
      </author>
      <author>
        <name>Shivvers, Isaac</name>
      </author>
      <author>
        <name>Spencer, Chance L</name>
      </author>
      <author>
        <name>Stahl, Benjamin E</name>
      </author>
      <author>
        <name>Stegman, Samantha</name>
      </author>
      <author>
        <name>Stomberg, Isak</name>
      </author>
      <author>
        <name>Valenti, Stefano</name>
        <uri>https://orcid.org/0000-0001-8818-0795</uri>
      </author>
      <author>
        <name>Walsh, Jonelle L</name>
      </author>
      <author>
        <name>Yuk, Heechan</name>
      </author>
      <author>
        <name>Zheng, WeiKang</name>
      </author>
    </item>
    <item>
      <title>The Lick AGN Monitoring Project 2016: Dynamical Modeling of Velocity-Resolved H\b{eta} Lags in Luminous Seyfert Galaxies</title>
      <link>https://escholarship.org/uc/item/3rt576z3</link>
      <description>We have modeled the velocity-resolved reverberation response of the H\b{eta}
broad emission line in nine Seyfert 1 galaxies from the Lick Active Galactic
Nucleus (AGN) Monitioring Project 2016 sample, drawing inferences on the
geometry and structure of the low-ionization broad-line region (BLR) and the
mass of the central supermassive black hole. Overall, we find that the H\b{eta}
BLR is generally a thick disk viewed at low to moderate inclination angles. We
combine our sample with prior studies and investigate line-profile shape
dependence, such as log10(FWHM/{\sigma}), on BLR structure and kinematics and
search for any BLR luminosity-dependent trends. We find marginal evidence for
an anticorrelation between the profile shape of the broad H\b{eta} emission
line and the Eddington ratio, when using the root-mean-square spectrum.
However, we do not find any luminosity-dependent trends, and conclude that AGNs
have diverse BLR structure and kinematics, consistent with the hypothesis...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/3rt576z3</guid>
      <pubDate>Wed, 11 Mar 2026 00:00:00 +0000</pubDate>
      <author>
        <name>Villafaña, Lizvette</name>
      </author>
      <author>
        <name>Williams, Peter R</name>
      </author>
      <author>
        <name>Treu, Tommaso</name>
        <uri>https://orcid.org/0000-0002-8460-0390</uri>
      </author>
      <author>
        <name>Brewer, Brendon J</name>
      </author>
      <author>
        <name>Barth, Aaron J</name>
        <uri>https://orcid.org/0000-0002-3026-0562</uri>
      </author>
      <author>
        <name>Vivian, U</name>
      </author>
      <author>
        <name>Bennert, Vardha N</name>
      </author>
      <author>
        <name>Vogler, H Alexander</name>
      </author>
      <author>
        <name>Guo, Hengxiao</name>
      </author>
      <author>
        <name>Bentz, Misty C</name>
      </author>
      <author>
        <name>Canalizo, Gabriela</name>
      </author>
      <author>
        <name>Filippenko, Alexei V</name>
      </author>
      <author>
        <name>Gates, Elinor</name>
        <uri>https://orcid.org/0000-0002-3739-0423</uri>
      </author>
      <author>
        <name>Hamann, Frederick</name>
      </author>
      <author>
        <name>Joner, Michael D</name>
      </author>
      <author>
        <name>Malkan, Matthew A</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
      <author>
        <name>Woo, Jong-Hak</name>
      </author>
      <author>
        <name>Abolfathi, Bela</name>
      </author>
      <author>
        <name>Abramson, LE</name>
      </author>
      <author>
        <name>Armen, Stephen F</name>
      </author>
      <author>
        <name>Bae, Hyun-Jin</name>
      </author>
      <author>
        <name>Bohn, Thomas</name>
      </author>
      <author>
        <name>Boizelle, Benjamin D</name>
      </author>
      <author>
        <name>Bostroem, Azalee</name>
      </author>
      <author>
        <name>Brandel, Andrew</name>
      </author>
      <author>
        <name>Brink, Thomas G</name>
      </author>
      <author>
        <name>Channa, Sanyum</name>
      </author>
      <author>
        <name>Cooper, MC</name>
      </author>
      <author>
        <name>Cosens, Maren</name>
      </author>
      <author>
        <name>Donohue, Edward</name>
      </author>
      <author>
        <name>Fillingham, Sean P</name>
      </author>
      <author>
        <name>Gonzalez-Buitrago, Diego</name>
      </author>
      <author>
        <name>Halevi, Goni</name>
      </author>
      <author>
        <name>Halle, Andrew</name>
      </author>
      <author>
        <name>Hood, Carol E</name>
      </author>
      <author>
        <name>Horne, Keith</name>
      </author>
      <author>
        <name>Horst, J Chuck</name>
      </author>
      <author>
        <name>Kouchkovsky, Maxime de</name>
      </author>
      <author>
        <name>Kuhn, Benjamin</name>
      </author>
      <author>
        <name>Kumar, Sahana</name>
      </author>
      <author>
        <name>Leonard, Douglas C</name>
      </author>
      <author>
        <name>Loveland, Donald</name>
      </author>
      <author>
        <name>Manzano-King, Christina</name>
      </author>
      <author>
        <name>McHardy, Ian</name>
      </author>
      <author>
        <name>Michel, Raul</name>
      </author>
      <author>
        <name>Olaes, Melanie Kae B</name>
      </author>
      <author>
        <name>Park, Daeseong</name>
      </author>
      <author>
        <name>Park, Songyoun</name>
      </author>
      <author>
        <name>Pei, Liuyi</name>
      </author>
      <author>
        <name>Ross, Timothy W</name>
      </author>
      <author>
        <name>Runco, Jordan N</name>
      </author>
      <author>
        <name>Samuel, Jenna</name>
      </author>
      <author>
        <name>Sanchez, Javier</name>
      </author>
      <author>
        <name>Scott, Bryan</name>
      </author>
      <author>
        <name>Sexton, Remington O</name>
      </author>
      <author>
        <name>Shin, Jaejin</name>
      </author>
      <author>
        <name>Shivvers, Isaac</name>
      </author>
      <author>
        <name>Spencer, Chance L</name>
      </author>
      <author>
        <name>Stahl, Benjamin E</name>
      </author>
      <author>
        <name>Stegman, Samantha</name>
      </author>
      <author>
        <name>Stomberg, Isak</name>
      </author>
      <author>
        <name>Valenti, Stefano</name>
      </author>
      <author>
        <name>Walsh, Jonelle L</name>
      </author>
      <author>
        <name>Yuk, Heechan</name>
      </author>
      <author>
        <name>Zheng, WeiKang</name>
      </author>
    </item>
    <item>
      <title>The Draco Dwarf Spheroidal Galaxy in the First Year of Dark Energy Spectroscopic Instrument Data</title>
      <link>https://escholarship.org/uc/item/5616n854</link>
      <description>We investigate the spatial distribution, kinematics, and metallicity of stars in the Draco dwarf spheroidal galaxy using data from the Dark Energy Spectroscopic Instrument (DESI). We identify 155 high-probability members of Draco using line-of-sight velocity and metallicity information derived from DESI spectroscopy along with Gaia Data Release 3 proper motions. We find a mean line-of-sight velocity of −290.62 ± 0.80 km s−1 with dispersion = 9.57−0.62+0.66 km s−1 and mean metallicity [Fe/H] = −2.10 ± 0.04, consistent with previous results. We also find that Draco has a steep metallicity gradient within the half-light radius, and a metallicity gradient that flattens beyond the half-light radius. We identify eight high-probability members outside the King tidal radius, four of which we identify for the first time. These extratidal stars are not preferentially aligned along the orbit of Draco. We compute an average surface brightness of 34.02 mag arcsec−2 within an elliptical annulus...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/5616n854</guid>
      <pubDate>Wed, 17 Dec 2025 00:00:00 +0000</pubDate>
      <author>
        <name>Ding, J</name>
      </author>
      <author>
        <name>Rockosi, C</name>
      </author>
      <author>
        <name>Li, Ting S</name>
      </author>
      <author>
        <name>Koposov, SE</name>
      </author>
      <author>
        <name>Riley, AH</name>
      </author>
      <author>
        <name>Wang, W</name>
      </author>
      <author>
        <name>Cooper, AP</name>
      </author>
      <author>
        <name>Kizhuprakkat, N</name>
      </author>
      <author>
        <name>Lambert, M</name>
        <uri>https://orcid.org/0000-0002-2527-8899</uri>
      </author>
      <author>
        <name>Medina, GE</name>
      </author>
      <author>
        <name>Sandford, N</name>
      </author>
      <author>
        <name>Aguilar, J</name>
      </author>
      <author>
        <name>Ahlen, S</name>
      </author>
      <author>
        <name>Bianchi, D</name>
      </author>
      <author>
        <name>Brooks, D</name>
      </author>
      <author>
        <name>Claybaugh, T</name>
      </author>
      <author>
        <name>de la Macorra, A</name>
      </author>
      <author>
        <name>Doel, P</name>
      </author>
      <author>
        <name>Forero-Romero, JE</name>
      </author>
      <author>
        <name>Gaztañaga, E</name>
      </author>
      <author>
        <name>Gontcho, S Gontcho A</name>
      </author>
      <author>
        <name>Gutierrez, G</name>
      </author>
      <author>
        <name>Guy, J</name>
        <uri>https://orcid.org/0000-0001-9822-6793</uri>
      </author>
      <author>
        <name>Ishak, M</name>
      </author>
      <author>
        <name>Kehoe, R</name>
      </author>
      <author>
        <name>Kisner, T</name>
      </author>
      <author>
        <name>Kremin, A</name>
        <uri>https://orcid.org/0000-0001-6356-7424</uri>
      </author>
      <author>
        <name>Lahav, O</name>
      </author>
      <author>
        <name>Landriau, M</name>
        <uri>https://orcid.org/0000-0003-1838-8528</uri>
      </author>
      <author>
        <name>Le Guillou, L</name>
      </author>
      <author>
        <name>Meisner, A</name>
      </author>
      <author>
        <name>Miquel, R</name>
      </author>
      <author>
        <name>Moustakas, J</name>
      </author>
      <author>
        <name>Prada, F</name>
      </author>
      <author>
        <name>Pérez-Ràfols, I</name>
      </author>
      <author>
        <name>Rossi, G</name>
      </author>
      <author>
        <name>Sanchez, E</name>
      </author>
      <author>
        <name>Schubnell, M</name>
      </author>
      <author>
        <name>Silber, J</name>
        <uri>https://orcid.org/0000-0002-3461-0320</uri>
      </author>
      <author>
        <name>Sprayberry, D</name>
      </author>
      <author>
        <name>Tarlé, G</name>
      </author>
      <author>
        <name>Weaver, BA</name>
      </author>
      <author>
        <name>Zhou, R</name>
        <uri>https://orcid.org/0000-0001-5381-4372</uri>
      </author>
    </item>
    <item>
      <title>MSA-3D: Dissecting Galaxies at z ∼ 1 with High Spatial and Spectral Resolution</title>
      <link>https://escholarship.org/uc/item/74d8z25d</link>
      <description>Integral field spectroscopy (IFS) is a powerful tool for understanding the formation of galaxies across cosmic history. We present the observing strategy and first results of MSA-3D, a novel JWST program using multi-object spectroscopy in a slit-stepping strategy to produce IFS data cubes. The program observed 43 normal star-forming galaxies at redshifts 0.5 ≲ z ≲ 1.5, corresponding to the epoch when spiral thin-disk galaxies of the modern Hubble sequence are thought to emerge, obtaining kiloparsec-scale maps of rest-frame optical nebular emission lines with spectral resolution R ≃ 2700. Here we describe the multiplexed slit-stepping method, which is &amp;gt;15 times more efficient than the NIRSpec IFS mode for our program. As an example of the data quality, we present a case study of an individual galaxy at z = 1.104 (stellar mass M* = 1010.3M⊙, star formation rate, SFR = 3M⊙ yr−1) with prominent face-on spiral structure. We show that the galaxy exhibits a rotationally supported...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/74d8z25d</guid>
      <pubDate>Wed, 19 Nov 2025 00:00:00 +0000</pubDate>
      <author>
        <name>Barišić, Ivana</name>
      </author>
      <author>
        <name>Jones, Tucker</name>
        <uri>https://orcid.org/0000-0001-5860-3419</uri>
      </author>
      <author>
        <name>Mortensen, Kris</name>
      </author>
      <author>
        <name>Nanayakkara, Themiya</name>
      </author>
      <author>
        <name>Chen, Yuguang</name>
      </author>
      <author>
        <name>Sanders, Ryan</name>
      </author>
      <author>
        <name>Bullock, James S</name>
        <uri>https://orcid.org/0000-0003-4298-5082</uri>
      </author>
      <author>
        <name>Bundy, Kevin</name>
      </author>
      <author>
        <name>Faucher-Giguère, Claude-André</name>
      </author>
      <author>
        <name>Glazebrook, Karl</name>
      </author>
      <author>
        <name>Henry, Alaina</name>
      </author>
      <author>
        <name>Ju, Mengting</name>
      </author>
      <author>
        <name>Malkan, Matthew</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
      <author>
        <name>Morishita, Takahiro</name>
      </author>
      <author>
        <name>Obreschkow, Danail</name>
      </author>
      <author>
        <name>Roy, Namrata</name>
      </author>
      <author>
        <name>Salcedo, Juan M Espejo</name>
      </author>
      <author>
        <name>Shapley, Alice E</name>
      </author>
      <author>
        <name>Treu, Tommaso</name>
        <uri>https://orcid.org/0000-0002-8460-0390</uri>
      </author>
      <author>
        <name>Wang, Xin</name>
        <uri>https://orcid.org/0009-0006-8812-5175</uri>
      </author>
      <author>
        <name>Westfall, Kyle B</name>
        <uri>https://orcid.org/0000-0003-1809-6920</uri>
      </author>
    </item>
    <item>
      <title>Keck adaptive secondary mirror overview</title>
      <link>https://escholarship.org/uc/item/21g9j2dv</link>
      <description>The Keck Adaptive Secondary Mirror (KASM) project is planned as a core component of adaptive optics (AO) improvements for the Keck 1 telescope. KASM will provide image quality enhancements to all instrument locations, while also enabling correction of the ground layer turbulence for wide field instruments, and the foundation for a visible light diffraction-limited AO system. KASM is intended to replace the original telescope secondary mirror (M2) and will support both adaptive optics correction and purely passive (seeing-limited) observing modes of operation. The concept for KASM has been developed considering both voice coil and hybrid variable reluctance actuator technology. A metrology and calibration setup for off-sky use has been developed to verify KASM performance both prior to installation and once at the telescope.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/21g9j2dv</guid>
      <pubDate>Tue, 3 Dec 2024 00:00:00 +0000</pubDate>
      <author>
        <name>Hinz, Philip M</name>
      </author>
      <author>
        <name>Holden, Brad</name>
        <uri>https://orcid.org/0000-0002-6153-3076</uri>
      </author>
      <author>
        <name>Stelter, R Deno</name>
      </author>
      <author>
        <name>Radovan, Matt</name>
      </author>
      <author>
        <name>Hunter, Aaron</name>
      </author>
      <author>
        <name>Savage, Maureen</name>
      </author>
      <author>
        <name>Kupke, Renate</name>
      </author>
      <author>
        <name>Dillon, Daren</name>
      </author>
      <author>
        <name>Lu, Jessica</name>
        <uri>https://orcid.org/0000-0001-9611-0009</uri>
      </author>
      <author>
        <name>Chun, Mark</name>
      </author>
      <author>
        <name>Wizinowich, Peter</name>
      </author>
      <author>
        <name>Dekany, Richard</name>
      </author>
      <author>
        <name>Bouchez, Antonin</name>
      </author>
      <author>
        <name>Sallum, Steph</name>
      </author>
    </item>
    <item>
      <title>The growth of the central region by acquisition of counterrotating gas in star-forming galaxies</title>
      <link>https://escholarship.org/uc/item/91w478p4</link>
      <description>Galaxies grow through both internal and external processes. In about 10% of nearby red galaxies with little star formation, gas and stars are counter-rotating, demonstrating the importance of external gas acquisition in these galaxies. However, systematic studies of such phenomena in blue, star-forming galaxies are rare, leaving uncertain the role of external gas acquisition in driving evolution of blue galaxies. Here, based on new measurements with integral field spectroscopy of a large representative galaxy sample, we find an appreciable fraction of counter-rotators among blue galaxies (9 out of 489 galaxies). The central regions of blue counter-rotators show younger stellar populations and more intense, ongoing star formation than their outer parts, indicating ongoing growth of the central regions. The result offers observational evidence that the acquisition of external gas in blue galaxies is possible; the interaction with pre-existing gas funnels the gas into nuclear regions...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/91w478p4</guid>
      <pubDate>Fri, 6 Sep 2024 00:00:00 +0000</pubDate>
      <author>
        <name>Chen, Yan-Mei</name>
      </author>
      <author>
        <name>Shi, Yong</name>
      </author>
      <author>
        <name>Tremonti, Christy A</name>
      </author>
      <author>
        <name>Bershady, Matt</name>
      </author>
      <author>
        <name>Merrifield, Michael</name>
      </author>
      <author>
        <name>Emsellem, Eric</name>
      </author>
      <author>
        <name>Jin, Yi-Fei</name>
      </author>
      <author>
        <name>Huang, Song</name>
      </author>
      <author>
        <name>Fu, Hai</name>
      </author>
      <author>
        <name>Wake, David A</name>
      </author>
      <author>
        <name>Bundy, Kevin</name>
      </author>
      <author>
        <name>Stark, David</name>
      </author>
      <author>
        <name>Lin, Lihwai</name>
      </author>
      <author>
        <name>Argudo-Fernandez, Maria</name>
      </author>
      <author>
        <name>Bergmann, Thaisa Storchi</name>
      </author>
      <author>
        <name>Bizyaev, Dmitry</name>
      </author>
      <author>
        <name>Brownstein, Joel</name>
      </author>
      <author>
        <name>Bureau, Martin</name>
      </author>
      <author>
        <name>Chisholm, John</name>
      </author>
      <author>
        <name>Drory, Niv</name>
      </author>
      <author>
        <name>Guo, Qi</name>
      </author>
      <author>
        <name>Hao, Lei</name>
      </author>
      <author>
        <name>Hu, Jian</name>
      </author>
      <author>
        <name>Li, Cheng</name>
      </author>
      <author>
        <name>Li, Ran</name>
      </author>
      <author>
        <name>Lopes, Alexandre Roman</name>
      </author>
      <author>
        <name>Pan, Kai-Ke</name>
      </author>
      <author>
        <name>Riffel, Rogemar A</name>
      </author>
      <author>
        <name>Thomas, Daniel</name>
      </author>
      <author>
        <name>Wang, Lan</name>
      </author>
      <author>
        <name>Westfall, Kyle</name>
        <uri>https://orcid.org/0000-0003-1809-6920</uri>
      </author>
      <author>
        <name>Yan, Ren-Bin</name>
      </author>
    </item>
    <item>
      <title>Innovations and advances in instrumentation at the W. M. Keck Observatory, vol. III</title>
      <link>https://escholarship.org/uc/item/5qs0n1bc</link>
      <description>Innovations and advances in instrumentation at the W. M. Keck Observatory, vol. III</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/5qs0n1bc</guid>
      <pubDate>Thu, 15 Aug 2024 00:00:00 +0000</pubDate>
      <author>
        <name>Kassis, Marc F</name>
      </author>
      <author>
        <name>Alvarez, Carlos</name>
      </author>
      <author>
        <name>Baker, Ashley D</name>
      </author>
      <author>
        <name>Bailey, John I</name>
      </author>
      <author>
        <name>Banyal, Ravinder K</name>
      </author>
      <author>
        <name>Bertz, Rob</name>
      </author>
      <author>
        <name>Beichman, Charles A</name>
      </author>
      <author>
        <name>Bouchez, Antonin H</name>
      </author>
      <author>
        <name>Brown, Aaron M</name>
      </author>
      <author>
        <name>Brown, Matthew K</name>
      </author>
      <author>
        <name>Bundy, Kevin A</name>
      </author>
      <author>
        <name>Campbell, Randall D</name>
      </author>
      <author>
        <name>Chun, Mark R</name>
      </author>
      <author>
        <name>Cooke, Jeffrey</name>
      </author>
      <author>
        <name>Deich, William T</name>
      </author>
      <author>
        <name>Dekany, Richard G</name>
      </author>
      <author>
        <name>Doppmann, Greg</name>
      </author>
      <author>
        <name>Fassnacht, Christopher</name>
      </author>
      <author>
        <name>Ferrara, Jocelyn</name>
      </author>
      <author>
        <name>Fitzgerald, Michael P</name>
      </author>
      <author>
        <name>Fremling, Christoffer</name>
      </author>
      <author>
        <name>Fucik, Jason R</name>
      </author>
      <author>
        <name>Gibson, Steven R</name>
      </author>
      <author>
        <name>Gillingham, Peter R</name>
      </author>
      <author>
        <name>Glazebrook, Karl</name>
      </author>
      <author>
        <name>Greffe, Timothee</name>
      </author>
      <author>
        <name>Halverson, Samuel P</name>
      </author>
      <author>
        <name>Hill, Grant M</name>
      </author>
      <author>
        <name>Hillenbrand, Lynne</name>
      </author>
      <author>
        <name>Hinz, Philip M</name>
      </author>
      <author>
        <name>Holden, Bradford P</name>
        <uri>https://orcid.org/0000-0002-6153-3076</uri>
      </author>
      <author>
        <name>Howard, Andrew W</name>
      </author>
      <author>
        <name>Huber, Daniel</name>
      </author>
      <author>
        <name>Jones, Tucker A</name>
      </author>
      <author>
        <name>Jordan, Carolyn</name>
      </author>
      <author>
        <name>Jovanovic, Nemanja J</name>
      </author>
      <author>
        <name>Kain, Isabel J</name>
      </author>
      <author>
        <name>Kasliwal, Mansi M</name>
      </author>
      <author>
        <name>Kirby, Evan</name>
      </author>
      <author>
        <name>Konopacky, Quinn M</name>
      </author>
      <author>
        <name>Krishnan, Shanti</name>
      </author>
      <author>
        <name>Kulkarni, Shrinivas R</name>
      </author>
      <author>
        <name>Kupke, Renate</name>
      </author>
      <author>
        <name>Lanclos, Kyle</name>
      </author>
      <author>
        <name>Larkin, James E</name>
      </author>
      <author>
        <name>Lilley, Scott J</name>
      </author>
      <author>
        <name>Lingvay, Larry</name>
      </author>
      <author>
        <name>Lu, Jessica R</name>
      </author>
      <author>
        <name>Lyke, James E</name>
      </author>
      <author>
        <name>MacDonald, Nicholas</name>
      </author>
      <author>
        <name>Martin, Christopher</name>
      </author>
      <author>
        <name>Mather, John C</name>
      </author>
      <author>
        <name>Matuszewski, Mateusz</name>
      </author>
      <author>
        <name>Mawet, Dimitri P</name>
      </author>
      <author>
        <name>McGurk, Rosalie C</name>
      </author>
      <author>
        <name>Marin, Eduardo</name>
      </author>
      <author>
        <name>Meeks, Robert L</name>
      </author>
      <author>
        <name>Millar-Blanchaer, Maxwell A</name>
      </author>
      <author>
        <name>Nash, Reston B</name>
      </author>
      <author>
        <name>Neill, James D</name>
      </author>
      <author>
        <name>O'Meara, John M</name>
      </author>
      <author>
        <name>Pahuja, Rishi</name>
      </author>
      <author>
        <name>Peretz, Eliad</name>
      </author>
      <author>
        <name>Prusinski, Nikolaus</name>
      </author>
      <author>
        <name>Radovan, Matthew V</name>
      </author>
      <author>
        <name>Rider, Kodi A</name>
      </author>
      <author>
        <name>Roberts, Mitsuko K</name>
      </author>
      <author>
        <name>Rockosi, Constance M</name>
      </author>
      <author>
        <name>Rubenzahl, Ryan</name>
      </author>
      <author>
        <name>Sallum, Stephanie E</name>
      </author>
      <author>
        <name>Sandford, Dale</name>
      </author>
      <author>
        <name>Savage, Maureen L</name>
      </author>
      <author>
        <name>Skemer, Andrew J</name>
      </author>
      <author>
        <name>Smith, Roger</name>
      </author>
      <author>
        <name>Steidel, Charles</name>
      </author>
      <author>
        <name>Steiner, Jonathan</name>
      </author>
      <author>
        <name>Stelter, Richard D</name>
      </author>
      <author>
        <name>Walawender, Josh</name>
      </author>
      <author>
        <name>Westfall, Kyle B</name>
      </author>
      <author>
        <name>Wizinowich, Peter L</name>
      </author>
      <author>
        <name>Wright, Shelley A</name>
      </author>
      <author>
        <name>Wold, Truman</name>
      </author>
      <author>
        <name>Zimmer, Jake</name>
      </author>
    </item>
    <item>
      <title>Analysis of Neptune’s 2017 bright equatorial storm</title>
      <link>https://escholarship.org/uc/item/9j94n9g9</link>
      <description>We report the discovery of a large (∼ 8500 km diameter) infrared-bright storm at Neptune's equator in June 2017. We tracked the storm over a period of 7 months with high-cadence infrared snapshot imaging, carried out on 14 nights at the 10 m Keck II telescope and 17 nights at the Shane 120 inch reflector at Lick Observatory. The cloud feature was larger and more persistent than any equatorial clouds seen before on Neptune, remaining intermittently active from at least 10 June to 31 December 2017. Our Keck and Lick observations were augmented by very high-cadence images from the amateur community, which permitted the determination of accurate drift rates for the cloud feature. Its zonal drift speed was variable from 10 June to at least 25 July, but remained a constant 237.4 ± 0.2 m s−1 from 30 September until at least 15 November. The pressure of the cloud top was determined from radiative transfer calculations to be 0.3-0.6 bar; this value remained constant over the course of...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/9j94n9g9</guid>
      <pubDate>Tue, 23 Jul 2024 00:00:00 +0000</pubDate>
      <author>
        <name>Molter, Edward</name>
        <uri>https://orcid.org/0000-0003-3799-9033</uri>
      </author>
      <author>
        <name>de Pater, Imke</name>
      </author>
      <author>
        <name>Luszcz-Cook, Statia</name>
      </author>
      <author>
        <name>Hueso, Ricardo</name>
      </author>
      <author>
        <name>Tollefson, Joshua</name>
      </author>
      <author>
        <name>Alvarez, Carlos</name>
      </author>
      <author>
        <name>Sánchez-Lavega, Agustín</name>
      </author>
      <author>
        <name>Wong, Michael H</name>
      </author>
      <author>
        <name>Hsu, Andrew I</name>
      </author>
      <author>
        <name>Sromovsky, Lawrence A</name>
      </author>
      <author>
        <name>Fry, Patrick M</name>
      </author>
      <author>
        <name>Delcroix, Marc</name>
      </author>
      <author>
        <name>Campbell, Randy</name>
      </author>
      <author>
        <name>de Kleer, Katherine</name>
      </author>
      <author>
        <name>Gates, Elinor</name>
        <uri>https://orcid.org/0000-0002-3739-0423</uri>
      </author>
      <author>
        <name>Lynam, Paul David</name>
      </author>
      <author>
        <name>Ammons, S Mark</name>
      </author>
      <author>
        <name>Coy, Brandon Park</name>
      </author>
      <author>
        <name>Duchene, Gaspard</name>
        <uri>https://orcid.org/0000-0002-5092-6464</uri>
      </author>
      <author>
        <name>Gonzales, Erica J</name>
      </author>
      <author>
        <name>Hirsch, Lea</name>
      </author>
      <author>
        <name>Magnier, Eugene A</name>
      </author>
      <author>
        <name>Ragland, Sam</name>
      </author>
      <author>
        <name>Rich, R Michael</name>
      </author>
      <author>
        <name>Wang, Feige</name>
      </author>
    </item>
    <item>
      <title>GTC Follow-up Observations of Very Metal-poor Star Candidates from DESI</title>
      <link>https://escholarship.org/uc/item/7m06d2jp</link>
      <description>The observations from the Dark Energy Spectroscopic Instrument (DESI) will significantly increase the numbers of known extremely metal-poor stars by a factor of ∼10, improving the sample statistics to study the early chemical evolution of the Milky Way and the nature of the first stars. In this paper we report follow-up observations with high signal-to-noise ratio of nine metal-poor stars identified during the DESI commissioning with the Optical System for Imaging and Low-Resolution Integrated Spectroscopy (OSIRIS) instrument on the 10.4 m Gran Telescopio Canarias. The analysis of the data using a well-vetted methodology confirms the quality of the DESI spectra and the performance of the pipelines developed for the data reduction and analysis of DESI data.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/7m06d2jp</guid>
      <pubDate>Thu, 30 May 2024 00:00:00 +0000</pubDate>
      <author>
        <name>Prieto, Carlos Allende</name>
      </author>
      <author>
        <name>Aguado, David S</name>
      </author>
      <author>
        <name>Hernández, Jonay I González</name>
      </author>
      <author>
        <name>Rebolo, Rafael</name>
      </author>
      <author>
        <name>Najita, Joan</name>
      </author>
      <author>
        <name>Manser, Christopher J</name>
      </author>
      <author>
        <name>Rockosi, Constance</name>
      </author>
      <author>
        <name>Slepian, Zachary</name>
      </author>
      <author>
        <name>Mezcua, Mar</name>
      </author>
      <author>
        <name>Valluri, Monica</name>
      </author>
      <author>
        <name>Ezzeddine, Rana</name>
      </author>
      <author>
        <name>Koposov, Sergey E</name>
      </author>
      <author>
        <name>Cooper, Andrew P</name>
      </author>
      <author>
        <name>Dey, Arjun</name>
      </author>
      <author>
        <name>Gänsicke, Boris T</name>
      </author>
      <author>
        <name>Li, Ting S</name>
      </author>
      <author>
        <name>Cunha, Katia</name>
      </author>
      <author>
        <name>Zou, Siwei</name>
      </author>
      <author>
        <name>Aguilar, Jessica Nicole</name>
      </author>
      <author>
        <name>Ahlen, Steven</name>
      </author>
      <author>
        <name>Brooks, David</name>
      </author>
      <author>
        <name>Claybaugh, Todd</name>
      </author>
      <author>
        <name>Cole, Shaun</name>
      </author>
      <author>
        <name>Eftekharzadeh, Sarah</name>
      </author>
      <author>
        <name>Fanning, Kevin</name>
      </author>
      <author>
        <name>Forero-Romero, Jaime</name>
      </author>
      <author>
        <name>Gontcho, Satya Gontcho A</name>
      </author>
      <author>
        <name>Honscheid, Klaus</name>
      </author>
      <author>
        <name>Jablonka, Pascale</name>
      </author>
      <author>
        <name>Kehoe, Robert</name>
      </author>
      <author>
        <name>Kisner, Theodore</name>
      </author>
      <author>
        <name>Landriau, Martin</name>
        <uri>https://orcid.org/0000-0003-1838-8528</uri>
      </author>
      <author>
        <name>de la Macorra, Axel</name>
      </author>
      <author>
        <name>Meisner, Aaron</name>
      </author>
      <author>
        <name>Miquel, Ramón</name>
      </author>
      <author>
        <name>Moustakas, John</name>
      </author>
      <author>
        <name>Nie, Jundan</name>
      </author>
      <author>
        <name>Poppett, Claire</name>
      </author>
      <author>
        <name>Prada, Francisco</name>
      </author>
      <author>
        <name>Rezaie, Mehdi</name>
      </author>
      <author>
        <name>Rossi, Graziano</name>
      </author>
      <author>
        <name>Sánchez, Eusebio</name>
      </author>
      <author>
        <name>Schubnell, Michael</name>
      </author>
      <author>
        <name>Sharples, Ray</name>
      </author>
      <author>
        <name>Siudek, Malgorzata</name>
      </author>
      <author>
        <name>Smith, Verne V</name>
      </author>
      <author>
        <name>Tarlé, Gregory</name>
      </author>
      <author>
        <name>Vincenzo, Fiorenzo</name>
      </author>
      <author>
        <name>Weaver, Benjamin Alan</name>
      </author>
      <author>
        <name>Zhou, Zhimin</name>
      </author>
      <author>
        <name>Zou, Hu</name>
      </author>
    </item>
    <item>
      <title>A candidate super-Earth planet orbiting near the snow line of Barnard’s star</title>
      <link>https://escholarship.org/uc/item/00r9191z</link>
      <description>Barnard’s star is a red dwarf, and has the largest proper motion (apparent motion across the sky) of all known stars. At a distance of 1.8 parsecs1, it is the closest single star to the Sun; only the three stars in the α Centauri system are closer. Barnard’s star is also among the least magnetically active red dwarfs known2,3 and has an estimated age older than the Solar System. Its properties make it a prime target for planetary searches; various techniques with different sensitivity limits have been used previously, including radial-velocity imaging4–6, astrometry7,8 and direct imaging9, but all ultimately led to negative or null results. Here we combine numerous measurements from high-precision radial-velocity instruments, revealing the presence of a low-amplitude periodic signal with a period of 233 days. Independent photometric and spectroscopic monitoring, as well as an analysis of instrumental systematic effects, suggest that this signal is best explained as arising from...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/00r9191z</guid>
      <pubDate>Tue, 19 Sep 2023 00:00:00 +0000</pubDate>
      <author>
        <name>Ribas, I</name>
      </author>
      <author>
        <name>Tuomi, M</name>
      </author>
      <author>
        <name>Reiners, A</name>
      </author>
      <author>
        <name>Butler, RP</name>
      </author>
      <author>
        <name>Morales, JC</name>
      </author>
      <author>
        <name>Perger, M</name>
      </author>
      <author>
        <name>Dreizler, S</name>
      </author>
      <author>
        <name>Rodríguez-López, C</name>
      </author>
      <author>
        <name>González Hernández, JI</name>
      </author>
      <author>
        <name>Rosich, A</name>
      </author>
      <author>
        <name>Feng, F</name>
      </author>
      <author>
        <name>Trifonov, T</name>
      </author>
      <author>
        <name>Vogt, SS</name>
      </author>
      <author>
        <name>Caballero, JA</name>
      </author>
      <author>
        <name>Hatzes, A</name>
      </author>
      <author>
        <name>Herrero, E</name>
      </author>
      <author>
        <name>Jeffers, SV</name>
      </author>
      <author>
        <name>Lafarga, M</name>
      </author>
      <author>
        <name>Murgas, F</name>
      </author>
      <author>
        <name>Nelson, RP</name>
      </author>
      <author>
        <name>Rodríguez, E</name>
      </author>
      <author>
        <name>Strachan, JBP</name>
      </author>
      <author>
        <name>Tal-Or, L</name>
      </author>
      <author>
        <name>Teske, J</name>
      </author>
      <author>
        <name>Toledo-Padrón, B</name>
      </author>
      <author>
        <name>Zechmeister, M</name>
      </author>
      <author>
        <name>Quirrenbach, A</name>
      </author>
      <author>
        <name>Amado, PJ</name>
      </author>
      <author>
        <name>Azzaro, M</name>
      </author>
      <author>
        <name>Béjar, VJS</name>
      </author>
      <author>
        <name>Barnes, JR</name>
      </author>
      <author>
        <name>Berdiñas, ZM</name>
      </author>
      <author>
        <name>Burt, J</name>
      </author>
      <author>
        <name>Coleman, G</name>
      </author>
      <author>
        <name>Cortés-Contreras, M</name>
      </author>
      <author>
        <name>Crane, J</name>
      </author>
      <author>
        <name>Engle, SG</name>
      </author>
      <author>
        <name>Guinan, EF</name>
      </author>
      <author>
        <name>Haswell, CA</name>
      </author>
      <author>
        <name>Henning, Th</name>
      </author>
      <author>
        <name>Holden, B</name>
        <uri>https://orcid.org/0000-0002-6153-3076</uri>
      </author>
      <author>
        <name>Jenkins, J</name>
      </author>
      <author>
        <name>Jones, HRA</name>
      </author>
      <author>
        <name>Kaminski, A</name>
      </author>
      <author>
        <name>Kiraga, M</name>
      </author>
      <author>
        <name>Kürster, M</name>
      </author>
      <author>
        <name>Lee, MH</name>
      </author>
      <author>
        <name>López-González, MJ</name>
      </author>
      <author>
        <name>Montes, D</name>
      </author>
      <author>
        <name>Morin, J</name>
      </author>
      <author>
        <name>Ofir, A</name>
      </author>
      <author>
        <name>Pallé, E</name>
      </author>
      <author>
        <name>Rebolo, R</name>
      </author>
      <author>
        <name>Reffert, S</name>
      </author>
      <author>
        <name>Schweitzer, A</name>
      </author>
      <author>
        <name>Seifert, W</name>
      </author>
      <author>
        <name>Shectman, SA</name>
      </author>
      <author>
        <name>Staab, D</name>
      </author>
      <author>
        <name>Street, RA</name>
      </author>
      <author>
        <name>Suárez Mascareño, A</name>
      </author>
      <author>
        <name>Tsapras, Y</name>
      </author>
      <author>
        <name>Wang, SX</name>
      </author>
      <author>
        <name>Anglada-Escudé, G</name>
      </author>
    </item>
    <item>
      <title>The detection of intergalactic H α emission from the Slug Nebula at z ∼ 2.3</title>
      <link>https://escholarship.org/uc/item/8v69h64n</link>
      <description>The Slug Nebula is one of the largest and most luminous Lyman-alpha (LyA)
nebulae discovered to date, extending over 450 kiloparsecs (kpc) around the
bright quasar UM287 at z=2.283. Characterized by high surface brightnesses over
intergalactic scales, its LyA emission may either trace high-density ionized
gas ("clumps") or large column densities of neutral material. To distinguish
between these two possibilities, information from a non-resonant line such as
Halpha is crucial. Therefore, we analyzed a deep MOSFIRE observation of one of
the brightest LyA emitting regions in the Slug Nebula with the goal of
detecting associated Halpha emission. We also obtained a deep, moderate
resolution LyA spectrum of the nearby brightest region of the Slug. We detected
an Halpha flux of F_(Halpha)= 2.62 +/- 0.47 x 10^-17 erg/cm^2/s
(SB_(Halpha)=2.70 +/- 0.48 x 10^-18 erg/cm^2/s/sq") at the expected spatial and
spectral location. Combining the Halpha detection with its corresponding LyA
flux (determined...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/8v69h64n</guid>
      <pubDate>Thu, 14 Sep 2023 00:00:00 +0000</pubDate>
      <author>
        <name>Leibler, Camille N</name>
      </author>
      <author>
        <name>Cantalupo, Sebastiano</name>
      </author>
      <author>
        <name>Holden, Bradford P</name>
        <uri>https://orcid.org/0000-0002-6153-3076</uri>
      </author>
      <author>
        <name>Madau, Piero</name>
        <uri>https://orcid.org/0000-0002-6336-3293</uri>
      </author>
    </item>
    <item>
      <title>Three’s Company: An Additional Non-transiting Super-Earth in the Bright HD 3167 System, and Masses for All Three Planets</title>
      <link>https://escholarship.org/uc/item/20s178w7</link>
      <description>HD 3167 is a bright (V = 8.9), nearby K0 star observed by the NASA K2 mission (EPIC 220383386), hosting two small, short-period transiting planets. Here we present the results of a multi-site, multi-instrument radial-velocity campaign to characterize the HD 3167 system. The masses of the transiting planets are 5.02 ±0.38 M+for HD 3167 b, a hot super-Earth with a likely rocky composition (ρb = 5.60 +2.15-1.43= g cm-3), and 9.80 +1.30-1.24 M+for HD 3167 c, a warm sub-Neptune with a likely substantial volatile complement (pc = 1.97 0.94-0.59 g cm-3). We explore the possibility of atmospheric composition analysis and determine that planet c is amenable to transmission spectroscopy measurements, and planet b is a potential thermal emission target. We detect a third, non-transiting planet, HD 3167 d, with a period of 8.509 ±0.045 d (between planets b and c) and a minimum mass of 6.90 ±0.71 M⊕. We are able to constrain the mutual inclination of planet d with planets b and c: we rule...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/20s178w7</guid>
      <pubDate>Thu, 5 Jan 2023 00:00:00 +0000</pubDate>
      <author>
        <name>Christiansen, Jessie L</name>
      </author>
      <author>
        <name>Vanderburg, Andrew</name>
      </author>
      <author>
        <name>Burt, Jennifer</name>
      </author>
      <author>
        <name>Fulton, BJ</name>
      </author>
      <author>
        <name>Batygin, Konstantin</name>
      </author>
      <author>
        <name>Benneke, Björn</name>
      </author>
      <author>
        <name>Brewer, John M</name>
      </author>
      <author>
        <name>Charbonneau, David</name>
      </author>
      <author>
        <name>Ciardi, David R</name>
      </author>
      <author>
        <name>Cameron, Andrew Collier</name>
      </author>
      <author>
        <name>Coughlin, Jeffrey L</name>
      </author>
      <author>
        <name>Crossfield, Ian JM</name>
      </author>
      <author>
        <name>Dressing, Courtney</name>
        <uri>https://orcid.org/0000-0001-8189-0233</uri>
      </author>
      <author>
        <name>Greene, Thomas P</name>
      </author>
      <author>
        <name>Howard, Andrew W</name>
      </author>
      <author>
        <name>Latham, David W</name>
      </author>
      <author>
        <name>Molinari, Emilio</name>
      </author>
      <author>
        <name>Mortier, Annelies</name>
      </author>
      <author>
        <name>Mullally, Fergal</name>
      </author>
      <author>
        <name>Pepe, Francesco</name>
      </author>
      <author>
        <name>Rice, Ken</name>
      </author>
      <author>
        <name>Sinukoff, Evan</name>
      </author>
      <author>
        <name>Sozzetti, Alessandro</name>
      </author>
      <author>
        <name>Thompson, Susan E</name>
      </author>
      <author>
        <name>Udry, Stéphane</name>
      </author>
      <author>
        <name>Vogt, Steven S</name>
      </author>
      <author>
        <name>Barman, Travis S</name>
      </author>
      <author>
        <name>Batalha, Natasha E</name>
      </author>
      <author>
        <name>Bouchy, François</name>
      </author>
      <author>
        <name>Buchhave, Lars A</name>
      </author>
      <author>
        <name>Butler, R Paul</name>
      </author>
      <author>
        <name>Cosentino, Rosario</name>
      </author>
      <author>
        <name>Dupuy, Trent J</name>
      </author>
      <author>
        <name>Ehrenreich, David</name>
      </author>
      <author>
        <name>Fiorenzano, Aldo</name>
      </author>
      <author>
        <name>Hansen, Brad MS</name>
      </author>
      <author>
        <name>Henning, Thomas</name>
      </author>
      <author>
        <name>Hirsch, Lea</name>
      </author>
      <author>
        <name>Holden, Bradford P</name>
      </author>
      <author>
        <name>Isaacson, Howard T</name>
        <uri>https://orcid.org/0000-0002-0531-1073</uri>
      </author>
      <author>
        <name>Johnson, John A</name>
      </author>
      <author>
        <name>Knutson, Heather A</name>
      </author>
      <author>
        <name>Kosiarek, Molly</name>
      </author>
      <author>
        <name>López-Morales, Mercedes</name>
      </author>
      <author>
        <name>Lovis, Christophe</name>
      </author>
      <author>
        <name>Malavolta, Luca</name>
      </author>
      <author>
        <name>Mayor, Michel</name>
      </author>
      <author>
        <name>Micela, Giuseppina</name>
      </author>
      <author>
        <name>Motalebi, Fatemeh</name>
      </author>
      <author>
        <name>Petigura, Erik</name>
      </author>
      <author>
        <name>Phillips, David F</name>
      </author>
      <author>
        <name>Piotto, Giampaolo</name>
      </author>
      <author>
        <name>Rogers, Leslie A</name>
      </author>
      <author>
        <name>Sasselov, Dimitar</name>
      </author>
      <author>
        <name>Schlieder, Joshua E</name>
      </author>
      <author>
        <name>Ségransan, Damien</name>
      </author>
      <author>
        <name>Watson, Christopher A</name>
      </author>
      <author>
        <name>Weiss, Lauren M</name>
      </author>
    </item>
    <item>
      <title>SDSS-IV MaNGA: How the Stellar Populations of Passive Central Galaxies Depend on Stellar and Halo Mass</title>
      <link>https://escholarship.org/uc/item/77f6c5hq</link>
      <description>We analyze spatially resolved and co-added SDSS-IV MaNGA spectra with signal-to-noise ratio ∼100 from 2200 passive central galaxies (z ∼ 0.05) to understand how central galaxy assembly depends on stellar mass (M *) and halo mass (M h ). We control for systematic errors in M h by employing a new group catalog from Tinker and the widely used Yang et al. catalog. At fixed M *, the strengths of several stellar absorption features vary systematically with M h . Completely model-free, this is one of the first indications that the stellar populations of centrals with identical M * are affected by the properties of their host halos. To interpret these variations, we applied full spectral fitting with the code alf. At fixed M *, centrals in more massive halos are older, show lower [Fe/H], and have higher [Mg/Fe] with 3.5σ confidence. We conclude that halos not only dictate how much M * galaxies assemble but also modulate their chemical enrichment histories. Turning to our analysis at fixed...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/77f6c5hq</guid>
      <pubDate>Fri, 16 Dec 2022 00:00:00 +0000</pubDate>
      <author>
        <name>Oyarzún, Grecco A</name>
      </author>
      <author>
        <name>Bundy, Kevin</name>
      </author>
      <author>
        <name>Westfall, Kyle B</name>
        <uri>https://orcid.org/0000-0003-1809-6920</uri>
      </author>
      <author>
        <name>Tinker, Jeremy L</name>
      </author>
      <author>
        <name>Belfiore, Francesco</name>
      </author>
      <author>
        <name>Argudo-Fernández, Maria</name>
      </author>
      <author>
        <name>Zheng, Zheng</name>
      </author>
      <author>
        <name>Conroy, Charlie</name>
      </author>
      <author>
        <name>Masters, Karen L</name>
      </author>
      <author>
        <name>Wake, David</name>
      </author>
      <author>
        <name>Law, David R</name>
      </author>
      <author>
        <name>McDermid, Richard M</name>
      </author>
      <author>
        <name>Aragón-Salamanca, Alfonso</name>
      </author>
      <author>
        <name>Parikh, Taniya</name>
      </author>
      <author>
        <name>Yan, Renbin</name>
      </author>
      <author>
        <name>Bershady, Matthew</name>
      </author>
      <author>
        <name>Sánchez, Sebastián F</name>
      </author>
      <author>
        <name>Andrews, Brett H</name>
      </author>
      <author>
        <name>Fernández-Trincado, José G</name>
      </author>
      <author>
        <name>Lane, Richard R</name>
      </author>
      <author>
        <name>Bizyaev, D</name>
      </author>
      <author>
        <name>Boardman, Nicholas Fraser</name>
      </author>
      <author>
        <name>Lacerna, Ivan</name>
      </author>
      <author>
        <name>Brownstein, JR</name>
      </author>
      <author>
        <name>Drory, Niv</name>
      </author>
      <author>
        <name>Zhang, Kai</name>
      </author>
    </item>
    <item>
      <title>Inferring the intergalactic medium neutral fraction at z ∼ 6–8 with low-luminosity Lyman break galaxies</title>
      <link>https://escholarship.org/uc/item/7zs2q9fv</link>
      <description>We present a Bayesian inference on the neutral hydrogen fraction of the intergalactic medium (IGM), x small HI, at z ∼6-8 using the properties of Lyman break galaxies (LBGs) during the epoch of reionization. We use large samples of LBG candidates at 5.5 ≤ z ≤ 8.2 with spectroscopy from Keck/DEIMOS and Keck/MOSFIRE. For each galaxy, we incorporate either the Lyman-α (Lyα) equivalent width (EW) for detections or the EW limit spectrum for non-detections to parametrize the EW distribution at various ultraviolet brightnesses for a given redshift. Using our reference sample of galaxy candidates from the ionized universe at z ∼6.0, we are able to infer x small HI at two redshifts: z ∼6.7 and z ∼7.6. This work includes intrinsically faint, gravitationally lensed galaxies at z ∼6.0 in order to constrain the intrinsic faint-end Lyα EW distribution and provide a comparable population of galaxies to counterparts in our sample that are at higher redshift. The inclusion of faint galaxy candidates,...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/7zs2q9fv</guid>
      <pubDate>Wed, 14 Dec 2022 00:00:00 +0000</pubDate>
      <author>
        <name>Bolan, Patricia</name>
      </author>
      <author>
        <name>Lemaux, Brian C</name>
      </author>
      <author>
        <name>Mason, Charlotte</name>
      </author>
      <author>
        <name>Bradač, Maruša</name>
      </author>
      <author>
        <name>Treu, Tommaso</name>
        <uri>https://orcid.org/0000-0002-8460-0390</uri>
      </author>
      <author>
        <name>Strait, Victoria</name>
      </author>
      <author>
        <name>Pelliccia, Debora</name>
      </author>
      <author>
        <name>Pentericci, Laura</name>
      </author>
      <author>
        <name>Malkan, Matthew</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
    </item>
    <item>
      <title>The Seventeenth Data Release of the Sloan Digital Sky Surveys: Complete Release of MaNGA, MaStar, and APOGEE-2 Data</title>
      <link>https://escholarship.org/uc/item/2qw2m22g</link>
      <description>This paper documents the seventeenth data release (DR17) from the Sloan Digital Sky Surveys; the fifth and final release from the fourth phase (SDSS-IV). DR17 contains the complete release of the Mapping Nearby Galaxies at Apache Point Observatory (MaNGA) survey, which reached its goal of surveying over 10,000 nearby galaxies. The complete release of the MaNGA Stellar Library accompanies this data, providing observations of almost 30,000 stars through the MaNGA instrument during bright time. DR17 also contains the complete release of the Apache Point Observatory Galactic Evolution Experiment 2 survey that publicly releases infrared spectra of over 650,000 stars. The main sample from the Extended Baryon Oscillation Spectroscopic Survey (eBOSS), as well as the subsurvey Time Domain Spectroscopic Survey data were fully released in DR16. New single-fiber optical spectroscopy released in DR17 is from the SPectroscipic IDentification of ERosita Survey subsurvey and the eBOSS-RM program....</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/2qw2m22g</guid>
      <pubDate>Wed, 24 Aug 2022 00:00:00 +0000</pubDate>
      <author>
        <name>Abdurro’uf</name>
      </author>
      <author>
        <name>Accetta, Katherine</name>
      </author>
      <author>
        <name>Aerts, Conny</name>
      </author>
      <author>
        <name>Aguirre, Víctor Silva</name>
      </author>
      <author>
        <name>Ahumada, Romina</name>
      </author>
      <author>
        <name>Ajgaonkar, Nikhil</name>
      </author>
      <author>
        <name>Ak, N Filiz</name>
      </author>
      <author>
        <name>Alam, Shadab</name>
      </author>
      <author>
        <name>Prieto, Carlos Allende</name>
      </author>
      <author>
        <name>Almeida, Andrés</name>
      </author>
      <author>
        <name>Anders, Friedrich</name>
      </author>
      <author>
        <name>Anderson, Scott F</name>
      </author>
      <author>
        <name>Andrews, Brett H</name>
      </author>
      <author>
        <name>Anguiano, Borja</name>
      </author>
      <author>
        <name>Aquino-Ortíz, Erik</name>
      </author>
      <author>
        <name>Aragón-Salamanca, Alfonso</name>
      </author>
      <author>
        <name>Argudo-Fernández, Maria</name>
      </author>
      <author>
        <name>Ata, Metin</name>
      </author>
      <author>
        <name>Aubert, Marie</name>
      </author>
      <author>
        <name>Avila-Reese, Vladimir</name>
      </author>
      <author>
        <name>Badenes, Carles</name>
      </author>
      <author>
        <name>Barbá, Rodolfo H</name>
      </author>
      <author>
        <name>Barger, Kat</name>
      </author>
      <author>
        <name>Barrera-Ballesteros, Jorge K</name>
      </author>
      <author>
        <name>Beaton, Rachael L</name>
      </author>
      <author>
        <name>Beers, Timothy C</name>
      </author>
      <author>
        <name>Belfiore, Francesco</name>
      </author>
      <author>
        <name>Bender, Chad F</name>
      </author>
      <author>
        <name>Bernardi, Mariangela</name>
      </author>
      <author>
        <name>Bershady, Matthew A</name>
      </author>
      <author>
        <name>Beutler, Florian</name>
      </author>
      <author>
        <name>Bidin, Christian Moni</name>
      </author>
      <author>
        <name>Bird, Jonathan C</name>
      </author>
      <author>
        <name>Bizyaev, Dmitry</name>
      </author>
      <author>
        <name>Blanc, Guillermo A</name>
      </author>
      <author>
        <name>Blanton, Michael R</name>
      </author>
      <author>
        <name>Boardman, Nicholas Fraser</name>
      </author>
      <author>
        <name>Bolton, Adam S</name>
      </author>
      <author>
        <name>Boquien, Médéric</name>
      </author>
      <author>
        <name>Borissova, Jura</name>
      </author>
      <author>
        <name>Bovy, Jo</name>
      </author>
      <author>
        <name>Brandt, WN</name>
      </author>
      <author>
        <name>Brown, Jordan</name>
      </author>
      <author>
        <name>Brownstein, Joel R</name>
      </author>
      <author>
        <name>Brusa, Marcella</name>
      </author>
      <author>
        <name>Buchner, Johannes</name>
      </author>
      <author>
        <name>Bundy, Kevin</name>
      </author>
      <author>
        <name>Burchett, Joseph N</name>
      </author>
      <author>
        <name>Bureau, Martin</name>
      </author>
      <author>
        <name>Burgasser, Adam</name>
        <uri>https://orcid.org/0000-0002-6523-9536</uri>
      </author>
      <author>
        <name>Cabang, Tuesday K</name>
      </author>
      <author>
        <name>Campbell, Stephanie</name>
      </author>
      <author>
        <name>Cappellari, Michele</name>
      </author>
      <author>
        <name>Carlberg, Joleen K</name>
      </author>
      <author>
        <name>Wanderley, Fábio Carneiro</name>
      </author>
      <author>
        <name>Carrera, Ricardo</name>
      </author>
      <author>
        <name>Cash, Jennifer</name>
      </author>
      <author>
        <name>Chen, Yan-Ping</name>
      </author>
      <author>
        <name>Chen, Wei-Huai</name>
      </author>
      <author>
        <name>Cherinka, Brian</name>
      </author>
      <author>
        <name>Chiappini, Cristina</name>
      </author>
      <author>
        <name>Choi, Peter Doohyun</name>
      </author>
      <author>
        <name>Chojnowski, S Drew</name>
      </author>
      <author>
        <name>Chung, Haeun</name>
      </author>
      <author>
        <name>Clerc, Nicolas</name>
      </author>
      <author>
        <name>Cohen, Roger E</name>
      </author>
      <author>
        <name>Comerford, Julia M</name>
      </author>
      <author>
        <name>Comparat, Johan</name>
      </author>
      <author>
        <name>da Costa, Luiz</name>
      </author>
      <author>
        <name>Covey, Kevin</name>
      </author>
      <author>
        <name>Crane, Jeffrey D</name>
      </author>
      <author>
        <name>Cruz-Gonzalez, Irene</name>
      </author>
      <author>
        <name>Culhane, Connor</name>
      </author>
      <author>
        <name>Cunha, Katia</name>
      </author>
      <author>
        <name>Dai, Y Sophia</name>
      </author>
      <author>
        <name>Damke, Guillermo</name>
      </author>
      <author>
        <name>Darling, Jeremy</name>
      </author>
      <author>
        <name>Davidson, James W</name>
      </author>
      <author>
        <name>Davies, Roger</name>
      </author>
      <author>
        <name>Dawson, Kyle</name>
      </author>
      <author>
        <name>De Lee, Nathan</name>
      </author>
      <author>
        <name>Diamond-Stanic, Aleksandar M</name>
      </author>
      <author>
        <name>Cano-Díaz, Mariana</name>
      </author>
      <author>
        <name>Sánchez, Helena Domínguez</name>
      </author>
      <author>
        <name>Donor, John</name>
      </author>
      <author>
        <name>Duckworth, Chris</name>
      </author>
      <author>
        <name>Dwelly, Tom</name>
      </author>
      <author>
        <name>Eisenstein, Daniel J</name>
      </author>
      <author>
        <name>Elsworth, Yvonne P</name>
      </author>
      <author>
        <name>Emsellem, Eric</name>
      </author>
      <author>
        <name>Eracleous, Mike</name>
      </author>
      <author>
        <name>Escoffier, Stephanie</name>
      </author>
      <author>
        <name>Fan, Xiaohui</name>
      </author>
      <author>
        <name>Farr, Emily</name>
      </author>
      <author>
        <name>Feng, Shuai</name>
      </author>
      <author>
        <name>Fernández-Trincado, José G</name>
      </author>
      <author>
        <name>Feuillet, Diane</name>
      </author>
      <author>
        <name>Filipp, Andreas</name>
      </author>
      <author>
        <name>Fillingham, Sean P</name>
      </author>
      <author>
        <name>Frinchaboy, Peter M</name>
      </author>
    </item>
    <item>
      <title>Final Targeting Strategy for the Sloan Digital Sky Survey IV Apache Point Observatory Galactic Evolution Experiment 2 North Survey</title>
      <link>https://escholarship.org/uc/item/4058w3z1</link>
      <description>The Apache Point Observatory Galactic Evolution Experiment 2 (APOGEE-2) is a dual-hemisphere, near-infrared (NIR), spectroscopic survey with the goal of producing a chemodynamical mapping of the Milky Way. The targeting for APOGEE-2 is complex and has evolved with time. In this paper, we present the updates and additions to the initial targeting strategy for APOGEE-2N presented in Zasowski et al. (2017). These modifications come in two implementation modes: (i) “Ancillary Science Programs” competitively awarded to Sloan Digital Sky Survey IV PIs through proposal calls in 2015 and 2017 for the pursuit of new scientific avenues outside the main survey, and (ii) an effective 1.5 yr expansion of the survey, known as the Bright Time Extension (BTX), made possible through accrued efficiency gains over the first years of the APOGEE-2N project. For the 23 distinct ancillary programs, we provide descriptions of the scientific aims, target selection, and how to identify these targets within...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/4058w3z1</guid>
      <pubDate>Wed, 20 Apr 2022 00:00:00 +0000</pubDate>
      <author>
        <name>Beaton, Rachael L</name>
      </author>
      <author>
        <name>Oelkers, Ryan J</name>
      </author>
      <author>
        <name>Hayes, Christian R</name>
      </author>
      <author>
        <name>Covey, Kevin R</name>
      </author>
      <author>
        <name>Chojnowski, SD</name>
      </author>
      <author>
        <name>De Lee, Nathan</name>
      </author>
      <author>
        <name>Sobeck, Jennifer S</name>
      </author>
      <author>
        <name>Majewski, Steven R</name>
      </author>
      <author>
        <name>Cohen, Roger E</name>
      </author>
      <author>
        <name>Fernández-Trincado, José</name>
      </author>
      <author>
        <name>Longa-Peña, Penélope</name>
      </author>
      <author>
        <name>O’Connell, Julia E</name>
      </author>
      <author>
        <name>Santana, Felipe A</name>
      </author>
      <author>
        <name>Stringfellow, Guy S</name>
      </author>
      <author>
        <name>Zasowski, Gail</name>
      </author>
      <author>
        <name>Aerts, Conny</name>
      </author>
      <author>
        <name>Anguiano, Borja</name>
      </author>
      <author>
        <name>Bender, Chad</name>
      </author>
      <author>
        <name>Cañas, Caleb I</name>
      </author>
      <author>
        <name>Cunha, Katia</name>
      </author>
      <author>
        <name>Donor, John</name>
      </author>
      <author>
        <name>Fleming, Scott W</name>
      </author>
      <author>
        <name>Frinchaboy, Peter M</name>
      </author>
      <author>
        <name>Feuillet, Diane</name>
      </author>
      <author>
        <name>Harding, Paul</name>
      </author>
      <author>
        <name>Hasselquist, Sten</name>
      </author>
      <author>
        <name>Holtzman, Jon A</name>
      </author>
      <author>
        <name>Johnson, Jennifer A</name>
      </author>
      <author>
        <name>Kollmeier, Juna A</name>
      </author>
      <author>
        <name>Kounkel, Marina</name>
      </author>
      <author>
        <name>Mahadevan, Suvrath</name>
      </author>
      <author>
        <name>Price-Whelan, Adrian M</name>
      </author>
      <author>
        <name>Rojas-Arriagada, Alvaro</name>
      </author>
      <author>
        <name>Román-Zúñiga, Carlos</name>
      </author>
      <author>
        <name>Schlafly, Edward F</name>
        <uri>https://orcid.org/0000-0002-3569-7421</uri>
      </author>
      <author>
        <name>Schultheis, Mathias</name>
      </author>
      <author>
        <name>Shetrone, Matthew</name>
        <uri>https://orcid.org/0000-0003-0509-2656</uri>
      </author>
      <author>
        <name>Simon, Joshua D</name>
      </author>
      <author>
        <name>Stassun, Keivan G</name>
      </author>
      <author>
        <name>Stutz, Amelia M</name>
      </author>
      <author>
        <name>Tayar, Jamie</name>
      </author>
      <author>
        <name>Teske, Johanna</name>
      </author>
      <author>
        <name>Tkachenko, Andrew</name>
      </author>
      <author>
        <name>Troup, Nicholas</name>
      </author>
      <author>
        <name>Albareti, Franco D</name>
      </author>
      <author>
        <name>Bizyaev, Dmitry</name>
      </author>
      <author>
        <name>Bovy, Jo</name>
      </author>
      <author>
        <name>Burgasser, Adam J</name>
        <uri>https://orcid.org/0000-0002-6523-9536</uri>
      </author>
      <author>
        <name>Comparat, Johan</name>
      </author>
      <author>
        <name>Downes, Juan José</name>
      </author>
      <author>
        <name>Geisler, Doug</name>
      </author>
      <author>
        <name>Inno, Laura</name>
      </author>
      <author>
        <name>Manchado, Arturo</name>
      </author>
      <author>
        <name>Ness, Melissa K</name>
      </author>
      <author>
        <name>Pinsonneault, Marc H</name>
      </author>
      <author>
        <name>Prada, Francisco</name>
      </author>
      <author>
        <name>Roman-Lopes, Alexandre</name>
      </author>
      <author>
        <name>Simonian, Gregory VA</name>
      </author>
      <author>
        <name>Smith, Verne V</name>
      </author>
      <author>
        <name>Yan, Renbin</name>
      </author>
      <author>
        <name>Zamora, Olga</name>
      </author>
    </item>
    <item>
      <title>The HETDEX Instrumentation: Hobby–Eberly Telescope Wide-field Upgrade and VIRUS</title>
      <link>https://escholarship.org/uc/item/4d77d3hk</link>
      <description>The Hobby–Eberly Telescope (HET) Dark Energy Experiment (HETDEX) is undertaking a blind wide-field low-resolution spectroscopic survey of 540 deg2 of sky to identify and derive redshifts for a million Lyα-emitting galaxies in the redshift range 1.9 &amp;lt; z &amp;lt; 3.5. The ultimate goal is to measure the expansion rate of the universe at this epoch, to sharply constrain cosmological parameters and thus the nature of dark energy. A major multiyear Wide-Field Upgrade (WFU) of the HET was completed in 2016 that substantially increased the field of view to 22′ diameter and the pupil to 10 m, by replacing the optical corrector, tracker, and Prime Focus Instrument Package and by developing a new telescope control system. The new, wide-field HET now feeds the Visible Integral-field Replicable Unit Spectrograph (VIRUS), a new low-resolution integral-field spectrograph (LRS2), and the Habitable Zone Planet Finder, a precision near-infrared radial velocity spectrograph. VIRUS consists of 156...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/4d77d3hk</guid>
      <pubDate>Tue, 19 Apr 2022 00:00:00 +0000</pubDate>
      <author>
        <name>Hill, Gary J</name>
      </author>
      <author>
        <name>Lee, Hanshin</name>
      </author>
      <author>
        <name>MacQueen, Phillip J</name>
      </author>
      <author>
        <name>Kelz, Andreas</name>
      </author>
      <author>
        <name>Drory, Niv</name>
      </author>
      <author>
        <name>Vattiat, Brian L</name>
      </author>
      <author>
        <name>Good, John M</name>
      </author>
      <author>
        <name>Ramsey, Jason</name>
      </author>
      <author>
        <name>Kriel, Herman</name>
      </author>
      <author>
        <name>Peterson, Trent</name>
      </author>
      <author>
        <name>DePoy, DL</name>
      </author>
      <author>
        <name>Gebhardt, Karl</name>
      </author>
      <author>
        <name>Marshall, JL</name>
      </author>
      <author>
        <name>Tuttle, Sarah E</name>
      </author>
      <author>
        <name>Bauer, Svend M</name>
      </author>
      <author>
        <name>Chonis, Taylor S</name>
      </author>
      <author>
        <name>Fabricius, Maximilian H</name>
      </author>
      <author>
        <name>Froning, Cynthia</name>
      </author>
      <author>
        <name>Häuser, Marco</name>
      </author>
      <author>
        <name>Indahl, Briana L</name>
      </author>
      <author>
        <name>Jahn, Thomas</name>
      </author>
      <author>
        <name>Landriau, Martin</name>
        <uri>https://orcid.org/0000-0003-1838-8528</uri>
      </author>
      <author>
        <name>Leck, Ron</name>
      </author>
      <author>
        <name>Montesano, Francesco</name>
      </author>
      <author>
        <name>Prochaska, Travis</name>
      </author>
      <author>
        <name>Snigula, Jan M</name>
      </author>
      <author>
        <name>Zeimann, Greg</name>
      </author>
      <author>
        <name>Bryant, Randy</name>
      </author>
      <author>
        <name>Damm, George</name>
      </author>
      <author>
        <name>Fowler, JR</name>
      </author>
      <author>
        <name>Janowiecki, Steven</name>
      </author>
      <author>
        <name>Martin, Jerry</name>
      </author>
      <author>
        <name>Mrozinski, Emily</name>
      </author>
      <author>
        <name>Odewahn, Stephen</name>
      </author>
      <author>
        <name>Rostopchin, Sergey</name>
      </author>
      <author>
        <name>Shetrone, Matthew</name>
        <uri>https://orcid.org/0000-0003-0509-2656</uri>
      </author>
      <author>
        <name>Spencer, Renny</name>
      </author>
      <author>
        <name>Cooper, Erin Mentuch</name>
      </author>
      <author>
        <name>Armandroff, Taft</name>
      </author>
      <author>
        <name>Bender, Ralf</name>
      </author>
      <author>
        <name>Dalton, Gavin</name>
      </author>
      <author>
        <name>Hopp, Ulrich</name>
      </author>
      <author>
        <name>Komatsu, Eiichiro</name>
      </author>
      <author>
        <name>Nicklas, Harald</name>
      </author>
      <author>
        <name>Ramsey, Lawrence W</name>
      </author>
      <author>
        <name>Roth, Martin M</name>
      </author>
      <author>
        <name>Schneider, Donald P</name>
      </author>
      <author>
        <name>Sneden, Chris</name>
      </author>
      <author>
        <name>Steinmetz, Matthias</name>
      </author>
    </item>
    <item>
      <title>The Hobby–Eberly Telescope Dark Energy Experiment (HETDEX) Survey Design, Reductions, and Detections* * Based on observations obtained with the Hobby–Eberly Telescope, which is a joint project of the University of Texas at Austin, the Pennsylvania State University, Ludwig-Maximilians-Universität München, and Georg-August-Universität Göttingen.</title>
      <link>https://escholarship.org/uc/item/38s3v07s</link>
      <description>We describe the survey design, calibration, commissioning, and emission-line detection algorithms for the Hobby–Eberly Telescope Dark Energy Experiment (HETDEX). The goal of HETDEX is to measure the redshifts of over a million Lyα emitting galaxies between 1.88 &amp;lt; z &amp;lt; 3.52, in a 540 deg2 area encompassing a comoving volume of 10.9 Gpc3. No preselection of targets is involved; instead the HETDEX measurements are accomplished via a spectroscopic survey using a suite of wide-field integral field units distributed over the focal plane of the telescope. This survey measures the Hubble expansion parameter and angular diameter distance, with a final expected accuracy of better than 1%. We detail the project’s observational strategy, reduction pipeline, source detection, and catalog generation, and present initial results for science verification in the Cosmological Evolution Survey, Extended Groth Strip, and Great Observatories Origins Deep Survey North fields. We demonstrate that...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/38s3v07s</guid>
      <pubDate>Tue, 19 Apr 2022 00:00:00 +0000</pubDate>
      <author>
        <name>Gebhardt, Karl</name>
      </author>
      <author>
        <name>Cooper, Erin Mentuch</name>
      </author>
      <author>
        <name>Ciardullo, Robin</name>
      </author>
      <author>
        <name>Acquaviva, Viviana</name>
      </author>
      <author>
        <name>Bender, Ralf</name>
      </author>
      <author>
        <name>Bowman, William P</name>
      </author>
      <author>
        <name>Castanheira, Barbara G</name>
      </author>
      <author>
        <name>Dalton, Gavin</name>
      </author>
      <author>
        <name>Davis, Dustin</name>
      </author>
      <author>
        <name>de Jong, Roelof S</name>
      </author>
      <author>
        <name>DePoy, DL</name>
      </author>
      <author>
        <name>Devarakonda, Yaswant</name>
      </author>
      <author>
        <name>Dongsheng, Sun</name>
      </author>
      <author>
        <name>Drory, Niv</name>
      </author>
      <author>
        <name>Fabricius, Maximilian</name>
      </author>
      <author>
        <name>Farrow, Daniel J</name>
      </author>
      <author>
        <name>Feldmeier, John</name>
      </author>
      <author>
        <name>Finkelstein, Steven L</name>
      </author>
      <author>
        <name>Froning, Cynthia S</name>
      </author>
      <author>
        <name>Gawiser, Eric</name>
      </author>
      <author>
        <name>Gronwall, Caryl</name>
      </author>
      <author>
        <name>Herold, Laura</name>
      </author>
      <author>
        <name>Hill, Gary J</name>
      </author>
      <author>
        <name>Hopp, Ulrich</name>
      </author>
      <author>
        <name>House, Lindsay R</name>
      </author>
      <author>
        <name>Janowiecki, Steven</name>
      </author>
      <author>
        <name>Jarvis, Matthew</name>
      </author>
      <author>
        <name>Jeong, Donghui</name>
      </author>
      <author>
        <name>Jogee, Shardha</name>
      </author>
      <author>
        <name>Kakuma, Ryota</name>
      </author>
      <author>
        <name>Kelz, Andreas</name>
      </author>
      <author>
        <name>Kollatschny, W</name>
      </author>
      <author>
        <name>Komatsu, Eiichiro</name>
      </author>
      <author>
        <name>Krumpe, Mirko</name>
      </author>
      <author>
        <name>Landriau, Martin</name>
        <uri>https://orcid.org/0000-0003-1838-8528</uri>
      </author>
      <author>
        <name>Liu, Chenxu</name>
      </author>
      <author>
        <name>Niemeyer, Maja Lujan</name>
      </author>
      <author>
        <name>MacQueen, Phillip</name>
      </author>
      <author>
        <name>Marshall, Jennifer</name>
      </author>
      <author>
        <name>Mawatari, Ken</name>
      </author>
      <author>
        <name>McLinden, Emily M</name>
      </author>
      <author>
        <name>Mukae, Shiro</name>
      </author>
      <author>
        <name>Nagaraj, Gautam</name>
      </author>
      <author>
        <name>Ono, Yoshiaki</name>
      </author>
      <author>
        <name>Ouchi, Masami</name>
      </author>
      <author>
        <name>Papovich, Casey</name>
      </author>
      <author>
        <name>Sakai, Nao</name>
      </author>
      <author>
        <name>Saito, Shun</name>
      </author>
      <author>
        <name>Schneider, Donald P</name>
      </author>
      <author>
        <name>Schulze, Andreas</name>
      </author>
      <author>
        <name>Shanmugasundararaj, Khavvia</name>
      </author>
      <author>
        <name>Shetrone, Matthew</name>
        <uri>https://orcid.org/0000-0003-0509-2656</uri>
      </author>
      <author>
        <name>Sneden, Chris</name>
      </author>
      <author>
        <name>Snigula, Jan</name>
      </author>
      <author>
        <name>Steinmetz, Matthias</name>
      </author>
      <author>
        <name>Thomas, Benjamin P</name>
      </author>
      <author>
        <name>Thomas, Brianna</name>
      </author>
      <author>
        <name>Tuttle, Sarah</name>
      </author>
      <author>
        <name>Urrutia, Tanya</name>
      </author>
      <author>
        <name>Wisotzki, Lutz</name>
      </author>
      <author>
        <name>Wold, Isak</name>
      </author>
      <author>
        <name>Zeimann, Gregory</name>
      </author>
      <author>
        <name>Zhang, Yechi</name>
      </author>
    </item>
    <item>
      <title>CANDELS Multi-wavelength Catalogs: Source Identification and Photometry in the CANDELS Extended Groth Strip</title>
      <link>https://escholarship.org/uc/item/54d8z4h9</link>
      <description>We present a 0.4-8 μm multi-wavelength photometric catalog in the Extended Groth Strip (EGS) field. This catalog is built on the Hubble Space Telescope (HST) WFC3 and ACS data from the Cosmic Assembly Near-infrared Deep Extragalactic Legacy Survey (CANDELS), and it incorporates the existing HST data from the All-wavelength Extended Groth strip International Survey (AEGIS) and the 3D-HST program. The catalog is based on detections in the F160W band reaching a depth of F160W = 26.62 AB (90% completeness, point sources). It includes the photometry for 41,457 objects over an area of ≈ 206 arcmin2 in the following bands: HST/ACS F606W and F814W; HST WFC3 F125W, F140W, and F160W; Canada-France-Hawaii Telescope (CFHT)/Megacam u∗, g′, r′, i′ and z′; CFHT/WIRCAM J, H, and K S; Mayall/NEWFIRM J1, J2, J3, H1, H2, and K; Spitzer IRAC 3.6, 4.5, 5.8, and 8.0 μm. We are also releasing value-added catalogs that provide robust photometric redshifts and stellar mass measurements. The catalogs are...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/54d8z4h9</guid>
      <pubDate>Tue, 14 Dec 2021 00:00:00 +0000</pubDate>
      <author>
        <name>Stefanon, Mauro</name>
      </author>
      <author>
        <name>Yan, Haojing</name>
      </author>
      <author>
        <name>Mobasher, Bahram</name>
      </author>
      <author>
        <name>Barro, Guillermo</name>
      </author>
      <author>
        <name>Donley, Jennifer L</name>
      </author>
      <author>
        <name>Fontana, Adriano</name>
      </author>
      <author>
        <name>Hemmati, Shoubaneh</name>
      </author>
      <author>
        <name>Koekemoer, Anton M</name>
      </author>
      <author>
        <name>Lee, BoMee</name>
      </author>
      <author>
        <name>Lee, Seong-Kook</name>
      </author>
      <author>
        <name>Nayyeri, Hooshang</name>
      </author>
      <author>
        <name>Peth, Michael</name>
      </author>
      <author>
        <name>Pforr, Janine</name>
      </author>
      <author>
        <name>Salvato, Mara</name>
      </author>
      <author>
        <name>Wiklind, Tommy</name>
      </author>
      <author>
        <name>Wuyts, Stijn</name>
      </author>
      <author>
        <name>Ashby, Matthew LN</name>
      </author>
      <author>
        <name>Castellano, Marco</name>
      </author>
      <author>
        <name>Conselice, Christopher J</name>
      </author>
      <author>
        <name>Cooper, Michael C</name>
        <uri>https://orcid.org/0000-0003-1371-6019</uri>
      </author>
      <author>
        <name>Cooray, Asantha R</name>
      </author>
      <author>
        <name>Dolch, Timothy</name>
      </author>
      <author>
        <name>Ferguson, Henry</name>
      </author>
      <author>
        <name>Galametz, Audrey</name>
      </author>
      <author>
        <name>Giavalisco, Mauro</name>
      </author>
      <author>
        <name>Guo, Yicheng</name>
      </author>
      <author>
        <name>Willner, Steven P</name>
      </author>
      <author>
        <name>Dickinson, Mark E</name>
      </author>
      <author>
        <name>Faber, Sandra M</name>
      </author>
      <author>
        <name>Fazio, Giovanni G</name>
      </author>
      <author>
        <name>Gardner, Jonathan P</name>
      </author>
      <author>
        <name>Gawiser, Eric</name>
      </author>
      <author>
        <name>Grazian, Andrea</name>
      </author>
      <author>
        <name>Grogin, Norman A</name>
      </author>
      <author>
        <name>Kocevski, Dale</name>
      </author>
      <author>
        <name>Koo, David C</name>
        <uri>https://orcid.org/0000-0003-3385-6799</uri>
      </author>
      <author>
        <name>Lee, Kyoung-Soo</name>
      </author>
      <author>
        <name>Lucas, Ray A</name>
      </author>
      <author>
        <name>McGrath, Elizabeth J</name>
      </author>
      <author>
        <name>Nandra, Kirpal</name>
      </author>
      <author>
        <name>Newman, Jeffrey A</name>
      </author>
      <author>
        <name>van der Wel, Arjen</name>
      </author>
    </item>
    <item>
      <title>Space Telescope and Optical Reverberation Mapping Project. XII. Broad-line Region Modeling of NGC 5548</title>
      <link>https://escholarship.org/uc/item/2mv66329</link>
      <description>We present geometric and dynamical modeling of the broad line region (BLR) for the multi-wavelength reverberation mapping campaign focused on NGC 5548 in 2014. The data set includes photometric and spectroscopic monitoring in the optical and ultraviolet, covering the Hβ, C iv, and Ly broad emission lines. We find an extended disk-like Hβ BLR with a mixture of near-circular and outflowing gas trajectories, while the C iv and Ly BLRs are much less extended and resemble shell-like structures. There is clear radial structure in the BLR, with C iv and Ly emission arising at smaller radii than the Hβ emission. Using the three lines, we make three independent black hole mass measurements, all of which are consistent. Combining these results gives a joint inference of . We examine the effect of using the V band instead of the UV continuum light curve on the results and find a size difference that is consistent with the measured UV-optical time lag, but the other structural and kinematic...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/2mv66329</guid>
      <pubDate>Mon, 14 Jun 2021 00:00:00 +0000</pubDate>
      <author>
        <name>Williams, PR</name>
      </author>
      <author>
        <name>Pancoast, A</name>
      </author>
      <author>
        <name>Treu, T</name>
        <uri>https://orcid.org/0000-0002-8460-0390</uri>
      </author>
      <author>
        <name>Brewer, BJ</name>
      </author>
      <author>
        <name>Peterson, BM</name>
      </author>
      <author>
        <name>Barth, AJ</name>
        <uri>https://orcid.org/0000-0002-3026-0562</uri>
      </author>
      <author>
        <name>Malkan, MA</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
      <author>
        <name>De Rosa, G</name>
      </author>
      <author>
        <name>Horne, Keith</name>
      </author>
      <author>
        <name>Kriss, GA</name>
      </author>
      <author>
        <name>Arav, N</name>
      </author>
      <author>
        <name>Bentz, MC</name>
      </author>
      <author>
        <name>Cackett, EM</name>
      </author>
      <author>
        <name>Bontà, E Dalla</name>
      </author>
      <author>
        <name>Dehghanian, M</name>
      </author>
      <author>
        <name>Done, C</name>
      </author>
      <author>
        <name>Ferland, GJ</name>
      </author>
      <author>
        <name>Grier, CJ</name>
      </author>
      <author>
        <name>Kaastra, J</name>
      </author>
      <author>
        <name>Kara, E</name>
      </author>
      <author>
        <name>Kochanek, CS</name>
      </author>
      <author>
        <name>Mathur, S</name>
      </author>
      <author>
        <name>Mehdipour, M</name>
      </author>
      <author>
        <name>Pogge, RW</name>
      </author>
      <author>
        <name>Proga, D</name>
      </author>
      <author>
        <name>Vestergaard, M</name>
      </author>
      <author>
        <name>Waters, T</name>
      </author>
      <author>
        <name>Adams, SM</name>
      </author>
      <author>
        <name>Anderson, MD</name>
      </author>
      <author>
        <name>Arévalo, P</name>
      </author>
      <author>
        <name>Beatty, TG</name>
      </author>
      <author>
        <name>Bennert, VN</name>
      </author>
      <author>
        <name>Bigley, A</name>
      </author>
      <author>
        <name>Bisogni, S</name>
      </author>
      <author>
        <name>Borman, GA</name>
      </author>
      <author>
        <name>Boroson, TA</name>
      </author>
      <author>
        <name>Bottorff, MC</name>
      </author>
      <author>
        <name>Brandt, WN</name>
      </author>
      <author>
        <name>Breeveld, AA</name>
      </author>
      <author>
        <name>Brotherton, M</name>
      </author>
      <author>
        <name>Brown, JE</name>
      </author>
      <author>
        <name>Brown, JS</name>
      </author>
      <author>
        <name>Canalizo, G</name>
      </author>
      <author>
        <name>Carini, MT</name>
      </author>
      <author>
        <name>Clubb, KI</name>
      </author>
      <author>
        <name>Comerford, JM</name>
      </author>
      <author>
        <name>Corsini, EM</name>
      </author>
      <author>
        <name>Crenshaw, DM</name>
      </author>
      <author>
        <name>Croft, S</name>
      </author>
      <author>
        <name>Croxall, KV</name>
      </author>
      <author>
        <name>Deason, AJ</name>
      </author>
      <author>
        <name>De Lorenzo-Cáceres, A</name>
      </author>
      <author>
        <name>Denney, KD</name>
      </author>
      <author>
        <name>Dietrich, M</name>
      </author>
      <author>
        <name>Edelson, R</name>
      </author>
      <author>
        <name>Efimova, NV</name>
      </author>
      <author>
        <name>Ely, J</name>
      </author>
      <author>
        <name>Evans, PA</name>
      </author>
      <author>
        <name>Fausnaugh, MM</name>
      </author>
      <author>
        <name>Filippenko, AV</name>
        <uri>https://orcid.org/0000-0003-3460-0103</uri>
      </author>
      <author>
        <name>Flatland, K</name>
      </author>
      <author>
        <name>Fox, OD</name>
      </author>
      <author>
        <name>Gardner, E</name>
      </author>
      <author>
        <name>Gates, EL</name>
      </author>
      <author>
        <name>Gehrels, N</name>
      </author>
      <author>
        <name>Geier, S</name>
      </author>
      <author>
        <name>Gelbord, JM</name>
      </author>
      <author>
        <name>Gonzalez, L</name>
      </author>
      <author>
        <name>Gorjian, V</name>
      </author>
      <author>
        <name>Greene, JE</name>
      </author>
      <author>
        <name>Grupe, D</name>
      </author>
      <author>
        <name>Gupta, A</name>
      </author>
      <author>
        <name>Hall, PB</name>
      </author>
      <author>
        <name>Henderson, CB</name>
      </author>
      <author>
        <name>Hicks, S</name>
      </author>
      <author>
        <name>Holmbeck, E</name>
      </author>
      <author>
        <name>Holoien, TW-S</name>
      </author>
      <author>
        <name>Hutchison, T</name>
      </author>
      <author>
        <name>Im, M</name>
      </author>
      <author>
        <name>Jensen, JJ</name>
      </author>
      <author>
        <name>Johnson, CA</name>
      </author>
      <author>
        <name>Joner, MD</name>
      </author>
      <author>
        <name>Jones, J</name>
      </author>
      <author>
        <name>Kaspi, S</name>
      </author>
      <author>
        <name>Kelly, PL</name>
      </author>
      <author>
        <name>Kennea, JA</name>
      </author>
      <author>
        <name>Kim, M</name>
      </author>
      <author>
        <name>Kim, S</name>
      </author>
      <author>
        <name>Kim, SC</name>
      </author>
      <author>
        <name>King, A</name>
      </author>
      <author>
        <name>Klimanov, SA</name>
      </author>
      <author>
        <name>Knigge, C</name>
      </author>
      <author>
        <name>Krongold, Y</name>
      </author>
      <author>
        <name>Lau, MW</name>
      </author>
      <author>
        <name>Lee, JC</name>
      </author>
      <author>
        <name>Leonard, DC</name>
      </author>
      <author>
        <name>Li, Miao</name>
      </author>
      <author>
        <name>Lira, P</name>
      </author>
      <author>
        <name>Lochhaas, C</name>
      </author>
      <author>
        <name>Ma, Zhiyuan</name>
      </author>
    </item>
    <item>
      <title>Performance of Kitt Peak’s Mayall 4-meter telescope during DESI commissioning</title>
      <link>https://escholarship.org/uc/item/9n74h9fq</link>
      <description>In preparation for the Dark Energy Spectroscopic Instrument (DESI), a new top end was installed on the Mayall 4-meter telescope at Kitt Peak National Observatory. The refurbished telescope and the DESI instrument were successfully commissioned on sky between 2019 October and 2020 March. Here we describe the pointing, tracking and imaging performance of the Mayall telescope equipped with its new DESI prime focus corrector, as measured by six guider cameras sampling the outer edge of DESI's focal plane. Analyzing ∼500,000 guider images acquired during commissioning, we find a median delivered image FWHM of 1.1 arcseconds (in the r-band at 650 nm), with the distribution extending to a best-case value of ∼0.6 arcseconds. The point spread function is well characterized by a Moffat profile with a power-law index of β ≈ 3.5 and little dependence of β on FWHM. The shape and size of the PSF delivered by the new corrector at a field angle of 1.57 degrees are very similar to those measured...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/9n74h9fq</guid>
      <pubDate>Wed, 17 Mar 2021 00:00:00 +0000</pubDate>
      <author>
        <name>Meisner, Aaron M</name>
      </author>
      <author>
        <name>Abareshi, Behzad</name>
      </author>
      <author>
        <name>Dey, Arjun</name>
      </author>
      <author>
        <name>Rockosi, Connie M</name>
      </author>
      <author>
        <name>Joyce, Richard R</name>
      </author>
      <author>
        <name>Sprayberry, David</name>
      </author>
      <author>
        <name>Besuner, Robert W</name>
      </author>
      <author>
        <name>Honscheid, Klaus</name>
      </author>
      <author>
        <name>Kirkby, David P</name>
        <uri>https://orcid.org/0000-0002-8828-5463</uri>
      </author>
      <author>
        <name>Kong, Hui</name>
      </author>
      <author>
        <name>Landriau, Martin</name>
      </author>
      <author>
        <name>Levi, Michael E</name>
      </author>
      <author>
        <name>Li, Ting S</name>
      </author>
      <author>
        <name>Marshall, Bob</name>
      </author>
      <author>
        <name>Martini, Paul</name>
      </author>
      <author>
        <name>Ross, Ashley J</name>
      </author>
      <author>
        <name>Brooks, David</name>
      </author>
      <author>
        <name>Doel, Peter</name>
      </author>
      <author>
        <name>Duan, Yutong</name>
      </author>
      <author>
        <name>Gaztanaga, Enrique</name>
      </author>
      <author>
        <name>Magneville, Christophe</name>
      </author>
      <author>
        <name>Prada, Francisco</name>
      </author>
      <author>
        <name>Schubnell, Michael</name>
      </author>
      <author>
        <name>Tarle, Gregory</name>
      </author>
    </item>
    <item>
      <title>Lick Observatory Supernova Search follow-up program: photometry data release of 93 Type Ia supernovae</title>
      <link>https://escholarship.org/uc/item/7h46n1q2</link>
      <description>ABSTRACT
                  We present BVRI and unfiltered light curves of 93 Type Ia supernovae (SNe&amp;nbsp;Ia) from the Lick Observatory Supernova Search (LOSS) follow-up program conducted between 2005 and 2018. Our sample consists of 78 spectroscopically normal SNe&amp;nbsp;Ia, with the remainder divided between distinct subclasses (3 SN&amp;nbsp;1991bg-like, 3 SN&amp;nbsp;1991T-like, 4 SNe&amp;nbsp;Iax, 2 peculiar, and 3 super-Chandrasekhar events), and has a median redshift of 0.0192. The SNe in our sample have a median coverage of 16 photometric epochs at a cadence of 5.4&amp;nbsp;d, and the median first observed epoch is ∼4.6&amp;nbsp;d before maximum B-band light. We describe how the SNe in our sample are discovered, observed, and processed, and we compare the results from our newly developed automated photometry pipeline to those from the previous processing pipeline used by LOSS. After investigating potential biases, we derive a final systematic uncertainty of 0.03&amp;nbsp;mag in BVRI for our data...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/7h46n1q2</guid>
      <pubDate>Thu, 17 Dec 2020 00:00:00 +0000</pubDate>
      <author>
        <name>Stahl, Benjamin E</name>
      </author>
      <author>
        <name>Zheng, WeiKang</name>
      </author>
      <author>
        <name>de Jaeger, Thomas</name>
      </author>
      <author>
        <name>Filippenko, Alexei V</name>
        <uri>https://orcid.org/0000-0003-3460-0103</uri>
      </author>
      <author>
        <name>Bigley, Andrew</name>
      </author>
      <author>
        <name>Blanchard, Kyle</name>
      </author>
      <author>
        <name>Blanchard, Peter K</name>
      </author>
      <author>
        <name>Brink, Thomas G</name>
      </author>
      <author>
        <name>Cargill, Samantha K</name>
      </author>
      <author>
        <name>Casper, Chadwick</name>
      </author>
      <author>
        <name>Channa, Sanyum</name>
      </author>
      <author>
        <name>Choi, Byung Yun</name>
      </author>
      <author>
        <name>Choksi, Nick</name>
      </author>
      <author>
        <name>Chu, Jason</name>
      </author>
      <author>
        <name>Clubb, Kelsey I</name>
      </author>
      <author>
        <name>Cohen, Daniel P</name>
      </author>
      <author>
        <name>Ellison, Michael</name>
      </author>
      <author>
        <name>Falcon, Edward</name>
      </author>
      <author>
        <name>Fazeli, Pegah</name>
      </author>
      <author>
        <name>Fuller, Kiera</name>
      </author>
      <author>
        <name>Ganeshalingam, Mohan</name>
      </author>
      <author>
        <name>Gates, Elinor L</name>
        <uri>https://orcid.org/0000-0002-3739-0423</uri>
      </author>
      <author>
        <name>Gould, Carolina</name>
      </author>
      <author>
        <name>Halevi, Goni</name>
      </author>
      <author>
        <name>Hayakawa, Kevin T</name>
      </author>
      <author>
        <name>Hestenes, Julia</name>
      </author>
      <author>
        <name>Jeffers, Benjamin T</name>
      </author>
      <author>
        <name>Joubert, Niels</name>
      </author>
      <author>
        <name>Kandrashoff, Michael T</name>
      </author>
      <author>
        <name>Kim, Minkyu</name>
      </author>
      <author>
        <name>Kim, Haejung</name>
      </author>
      <author>
        <name>Kislak, Michelle E</name>
      </author>
      <author>
        <name>Kleiser, Io</name>
      </author>
      <author>
        <name>Kong, Jason J</name>
      </author>
      <author>
        <name>de Kouchkovsky, Maxime</name>
      </author>
      <author>
        <name>Krishnan, Daniel</name>
      </author>
      <author>
        <name>Kumar, Sahana</name>
      </author>
      <author>
        <name>Leja, Joel</name>
      </author>
      <author>
        <name>Leonard, Erin J</name>
      </author>
      <author>
        <name>Li, Gary Z</name>
      </author>
      <author>
        <name>Li, Weidong</name>
      </author>
      <author>
        <name>Lu, Philip</name>
      </author>
      <author>
        <name>Mason, Michelle N</name>
      </author>
      <author>
        <name>Molloy, Jeffrey</name>
      </author>
      <author>
        <name>Pina, Kenia</name>
      </author>
      <author>
        <name>Rex, Jacob</name>
      </author>
      <author>
        <name>Ross, Timothy W</name>
      </author>
      <author>
        <name>Stegman, Samantha</name>
      </author>
      <author>
        <name>Tang, Kevin</name>
      </author>
      <author>
        <name>Thrasher, Patrick</name>
      </author>
      <author>
        <name>Wang, Xianggao</name>
      </author>
      <author>
        <name>Wilkins, Andrew</name>
      </author>
      <author>
        <name>Yuk, Heechan</name>
      </author>
      <author>
        <name>Yunus, Sameen</name>
      </author>
      <author>
        <name>Zhang, Keto</name>
      </author>
    </item>
    <item>
      <title>The 16th Data Release of the Sloan Digital Sky Surveys: First Release from the APOGEE-2 Southern Survey and Full Release of eBOSS Spectra</title>
      <link>https://escholarship.org/uc/item/9j80t4m1</link>
      <description>This paper documents the 16th data release (DR16) from the Sloan Digital Sky Surveys (SDSS), the fourth and penultimate from the fourth phase (SDSS-IV). This is the first release of data from the Southern Hemisphere survey of the Apache Point Observatory Galactic Evolution Experiment 2 (APOGEE-2); new data from APOGEE-2 North are also included. DR16 is also notable as the final data release for the main cosmological program of the Extended Baryon Oscillation Spectroscopic Survey (eBOSS), and all raw and reduced spectra from that project are released here. DR16 also includes all the data from the Time Domain Spectroscopic Survey and new data from the SPectroscopic IDentification of ERosita Survey programs, both of which were co-observed on eBOSS plates. DR16 has no new data from the Mapping Nearby Galaxies at Apache Point Observatory (MaNGA) survey (or the MaNGA Stellar Library “MaStar”). We also preview future SDSS-V operations (due to start in 2020), and summarize plans for the...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/9j80t4m1</guid>
      <pubDate>Tue, 18 Aug 2020 00:00:00 +0000</pubDate>
      <author>
        <name>Ahumada, Romina</name>
      </author>
      <author>
        <name>Prieto, Carlos Allende</name>
      </author>
      <author>
        <name>Almeida, Andrés</name>
      </author>
      <author>
        <name>Anders, Friedrich</name>
      </author>
      <author>
        <name>Anderson, Scott F</name>
      </author>
      <author>
        <name>Andrews, Brett H</name>
      </author>
      <author>
        <name>Anguiano, Borja</name>
      </author>
      <author>
        <name>Arcodia, Riccardo</name>
      </author>
      <author>
        <name>Armengaud, Eric</name>
      </author>
      <author>
        <name>Aubert, Marie</name>
      </author>
      <author>
        <name>Avila, Santiago</name>
      </author>
      <author>
        <name>Avila-Reese, Vladimir</name>
      </author>
      <author>
        <name>Badenes, Carles</name>
      </author>
      <author>
        <name>Balland, Christophe</name>
      </author>
      <author>
        <name>Barger, Kat</name>
      </author>
      <author>
        <name>Barrera-Ballesteros, Jorge K</name>
      </author>
      <author>
        <name>Basu, Sarbani</name>
      </author>
      <author>
        <name>Bautista, Julian</name>
      </author>
      <author>
        <name>Beaton, Rachael L</name>
      </author>
      <author>
        <name>Beers, Timothy C</name>
      </author>
      <author>
        <name>Benavides, B Izamar T</name>
      </author>
      <author>
        <name>Bender, Chad F</name>
      </author>
      <author>
        <name>Bernardi, Mariangela</name>
      </author>
      <author>
        <name>Bershady, Matthew</name>
      </author>
      <author>
        <name>Beutler, Florian</name>
      </author>
      <author>
        <name>Bidin, Christian Moni</name>
      </author>
      <author>
        <name>Bird, Jonathan</name>
      </author>
      <author>
        <name>Bizyaev, Dmitry</name>
      </author>
      <author>
        <name>Blanc, Guillermo A</name>
      </author>
      <author>
        <name>Blanton, Michael R</name>
      </author>
      <author>
        <name>Boquien, Médéric</name>
      </author>
      <author>
        <name>Borissova, Jura</name>
      </author>
      <author>
        <name>Bovy, Jo</name>
      </author>
      <author>
        <name>Brandt, WN</name>
      </author>
      <author>
        <name>Brinkmann, Jonathan</name>
      </author>
      <author>
        <name>Brownstein, Joel R</name>
      </author>
      <author>
        <name>Bundy, Kevin</name>
      </author>
      <author>
        <name>Bureau, Martin</name>
      </author>
      <author>
        <name>Burgasser, Adam</name>
        <uri>https://orcid.org/0000-0002-6523-9536</uri>
      </author>
      <author>
        <name>Burtin, Etienne</name>
      </author>
      <author>
        <name>Cano-Díaz, Mariana</name>
      </author>
      <author>
        <name>Capasso, Raffaella</name>
      </author>
      <author>
        <name>Cappellari, Michele</name>
      </author>
      <author>
        <name>Carrera, Ricardo</name>
      </author>
      <author>
        <name>Chabanier, Solène</name>
        <uri>https://orcid.org/0000-0002-5692-5243</uri>
      </author>
      <author>
        <name>Chaplin, William</name>
      </author>
      <author>
        <name>Chapman, Michael</name>
      </author>
      <author>
        <name>Cherinka, Brian</name>
      </author>
      <author>
        <name>Chiappini, Cristina</name>
      </author>
      <author>
        <name>Choi, Peter Doohyun</name>
      </author>
      <author>
        <name>Chojnowski, S Drew</name>
      </author>
      <author>
        <name>Chung, Haeun</name>
      </author>
      <author>
        <name>Clerc, Nicolas</name>
      </author>
      <author>
        <name>Coffey, Damien</name>
      </author>
      <author>
        <name>Comerford, Julia M</name>
      </author>
      <author>
        <name>Comparat, Johan</name>
      </author>
      <author>
        <name>da Costa, Luiz</name>
      </author>
      <author>
        <name>Cousinou, Marie-Claude</name>
      </author>
      <author>
        <name>Covey, Kevin</name>
      </author>
      <author>
        <name>Crane, Jeffrey D</name>
      </author>
      <author>
        <name>Cunha, Katia</name>
      </author>
      <author>
        <name>da Silva Ilha, Gabriele</name>
      </author>
      <author>
        <name>Dai, Yu Sophia</name>
      </author>
      <author>
        <name>Damsted, Sanna B</name>
      </author>
      <author>
        <name>Darling, Jeremy</name>
      </author>
      <author>
        <name>Davidson, James W</name>
      </author>
      <author>
        <name>Davies, Roger</name>
      </author>
      <author>
        <name>Dawson, Kyle</name>
      </author>
      <author>
        <name>De, Nikhil</name>
      </author>
      <author>
        <name>de la Macorra, Axel</name>
      </author>
      <author>
        <name>De Lee, Nathan</name>
      </author>
      <author>
        <name>de Andrade Queiroz, Anna Bárbara</name>
      </author>
      <author>
        <name>Machado, Alice Deconto</name>
      </author>
      <author>
        <name>de la Torre, Sylvain</name>
      </author>
      <author>
        <name>Dell’Agli, Flavia</name>
      </author>
      <author>
        <name>du Mas des Bourboux, Hélion</name>
      </author>
      <author>
        <name>Diamond-Stanic, Aleksandar M</name>
      </author>
      <author>
        <name>Dillon, Sean</name>
      </author>
      <author>
        <name>Donor, John</name>
      </author>
      <author>
        <name>Drory, Niv</name>
      </author>
      <author>
        <name>Duckworth, Chris</name>
      </author>
      <author>
        <name>Dwelly, Tom</name>
      </author>
      <author>
        <name>Ebelke, Garrett</name>
      </author>
      <author>
        <name>Eftekharzadeh, Sarah</name>
      </author>
      <author>
        <name>Eigenbrot, Arthur Davis</name>
      </author>
      <author>
        <name>Elsworth, Yvonne P</name>
      </author>
      <author>
        <name>Eracleous, Mike</name>
      </author>
      <author>
        <name>Erfanianfar, Ghazaleh</name>
      </author>
      <author>
        <name>Escoffier, Stephanie</name>
      </author>
      <author>
        <name>Fan, Xiaohui</name>
      </author>
      <author>
        <name>Farr, Emily</name>
      </author>
      <author>
        <name>Fernández-Trincado, José G</name>
      </author>
      <author>
        <name>Feuillet, Diane</name>
      </author>
      <author>
        <name>Finoguenov, Alexis</name>
      </author>
      <author>
        <name>Fofie, Patricia</name>
      </author>
      <author>
        <name>Fraser-McKelvie, Amelia</name>
      </author>
      <author>
        <name>Frinchaboy, Peter M</name>
      </author>
      <author>
        <name>Fromenteau, Sebastien</name>
      </author>
      <author>
        <name>Fu, Hai</name>
      </author>
      <author>
        <name>Galbany, Lluís</name>
      </author>
    </item>
    <item>
      <title>ProtoDESI: First On-Sky Technology Demonstration for the Dark Energy Spectroscopic Instrument</title>
      <link>https://escholarship.org/uc/item/55n6t108</link>
      <description>The Dark Energy Spectroscopic Instrument (DESI) is under construction to measure the expansion history of the universe using the baryon acoustic oscillations technique. The spectra of 35 million galaxies and quasars over 14,000 square degrees will be measured during a 5-year survey. A new prime focus corrector for the Mayall telescope at Kitt Peak National Observatory will deliver light to 5,000 individually targeted fiber-fed robotic positioners. The fibers in turn feed ten broadband multi-object spectrographs. We describe the ProtoDESI experiment, that was installed and commissioned on the 4-m Mayall telescope from 2016 August 14 to September 30. ProtoDESI was an on-sky technology demonstration with the goal to reduce technical risks associated with aligning optical fibers with targets using robotic fiber positioners and maintaining the stability required to operate DESI. The ProtoDESI prime focus instrument, consisting of three fiber positioners, illuminated fiducials, and...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/55n6t108</guid>
      <pubDate>Tue, 18 Aug 2020 00:00:00 +0000</pubDate>
      <author>
        <name>Fagrelius, Parker</name>
      </author>
      <author>
        <name>Abareshi, Behzad</name>
      </author>
      <author>
        <name>Allen, Lori</name>
      </author>
      <author>
        <name>Ballester, Otger</name>
      </author>
      <author>
        <name>Baltay, Charles</name>
      </author>
      <author>
        <name>Besuner, Robert</name>
      </author>
      <author>
        <name>Buckley-Geer, Elizabeth</name>
      </author>
      <author>
        <name>Butler, Karen</name>
      </author>
      <author>
        <name>Cardiel, Laia</name>
      </author>
      <author>
        <name>Dey, Arjun</name>
      </author>
      <author>
        <name>Duan, Yutong</name>
      </author>
      <author>
        <name>Elliott, Ann</name>
      </author>
      <author>
        <name>Emmet, William</name>
      </author>
      <author>
        <name>Gershkovich, Irena</name>
      </author>
      <author>
        <name>Honscheid, Klaus</name>
      </author>
      <author>
        <name>Illa, Jose M</name>
      </author>
      <author>
        <name>Jimenez, Jorge</name>
      </author>
      <author>
        <name>Joyce, Richard</name>
      </author>
      <author>
        <name>Karcher, Armin</name>
      </author>
      <author>
        <name>Kent, Stephen</name>
      </author>
      <author>
        <name>Lambert, Andrew</name>
        <uri>https://orcid.org/0009-0003-5658-2601</uri>
      </author>
      <author>
        <name>Lampton, Michael</name>
      </author>
      <author>
        <name>Levi, Michael</name>
        <uri>https://orcid.org/0000-0003-1887-1018</uri>
      </author>
      <author>
        <name>Manser, Christopher</name>
      </author>
      <author>
        <name>Marshall, Robert</name>
      </author>
      <author>
        <name>Martini, Paul</name>
      </author>
      <author>
        <name>Paat, Anthony</name>
      </author>
      <author>
        <name>Probst, Ronald</name>
      </author>
      <author>
        <name>Rabinowitz, David</name>
      </author>
      <author>
        <name>Reil, Kevin</name>
      </author>
      <author>
        <name>Robertson, Amy</name>
      </author>
      <author>
        <name>Rockosi, Connie</name>
      </author>
      <author>
        <name>Schlegel, David</name>
        <uri>https://orcid.org/0000-0002-5042-5088</uri>
      </author>
      <author>
        <name>Schubnell, Michael</name>
      </author>
      <author>
        <name>Serrano, Santiago</name>
      </author>
      <author>
        <name>Silber, Joseph</name>
        <uri>https://orcid.org/0000-0002-3461-0320</uri>
      </author>
      <author>
        <name>Soto, Christian</name>
      </author>
      <author>
        <name>Sprayberry, David</name>
      </author>
      <author>
        <name>Summers, David</name>
      </author>
      <author>
        <name>Tarlé, Greg</name>
      </author>
      <author>
        <name>Weaver, Benjamin A</name>
      </author>
    </item>
    <item>
      <title>The size and pervasiveness of Ly α–UV spatial offsets in star-forming galaxies at z ∼ 6</title>
      <link>https://escholarship.org/uc/item/1725d2v2</link>
      <description>We study the projected spatial offset between the ultraviolet continuum and Ly α emission for 65 lensed and unlensed galaxies in the Epoch of Reionization (5 ≤ z ≤ 7), the first such study at these redshifts, in order to understand the potential for these offsets to confuse estimates of the Ly α properties of galaxies observed in slit spectroscopy. While we find that ∼40 per cent of galaxies in our sample show significant projected spatial offsets ($|\Delta {\rm {Ly}\alpha -\rm {UV}}|$), we find a relatively modest average projected offset of $|\widetilde{\Delta }{\rm {Ly}\alpha -\rm {UV}}|$ = 0.61 ± 0.08 proper kpc for the entire sample. A small fraction of our sample, ∼10 per cent, exhibit offsets in excess of 2 proper kpc, with offsets seen up to ∼4 proper kpc, sizes that are considerably larger than the effective radii of typical galaxies at these redshifts. An internal comparison and a comparison to studies at lower redshift yielded no significant evidence of evolution of...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/1725d2v2</guid>
      <pubDate>Sun, 9 Aug 2020 00:00:00 +0000</pubDate>
      <author>
        <name>Lemaux, BC</name>
      </author>
      <author>
        <name>Fuller, S</name>
      </author>
      <author>
        <name>Bradač, M</name>
      </author>
      <author>
        <name>Pentericci, L</name>
      </author>
      <author>
        <name>Hoag, A</name>
      </author>
      <author>
        <name>Strait, V</name>
      </author>
      <author>
        <name>Treu, T</name>
        <uri>https://orcid.org/0000-0002-8460-0390</uri>
      </author>
      <author>
        <name>Alvarez, C</name>
      </author>
      <author>
        <name>Bolan, P</name>
      </author>
      <author>
        <name>Gandhi, PJ</name>
      </author>
      <author>
        <name>Huang, K-H</name>
      </author>
      <author>
        <name>Jones, T</name>
        <uri>https://orcid.org/0000-0001-5860-3419</uri>
      </author>
      <author>
        <name>Mason, C</name>
      </author>
      <author>
        <name>Pelliccia, D</name>
      </author>
      <author>
        <name>Ribeiro, B</name>
      </author>
      <author>
        <name>Ryan, RE</name>
      </author>
      <author>
        <name>Schmidt, KB</name>
      </author>
      <author>
        <name>Vanzella, E</name>
      </author>
      <author>
        <name>Khusanova, Y</name>
      </author>
      <author>
        <name>Le Fèvre, O</name>
      </author>
      <author>
        <name>Guaita, L</name>
      </author>
      <author>
        <name>Hathi, NP</name>
      </author>
      <author>
        <name>Koekemoer, A</name>
      </author>
      <author>
        <name>Pforr, J</name>
      </author>
    </item>
    <item>
      <title>Space Telescope and Optical Reverberation Mapping Project. IX. Velocity–Delay Maps for Broad Emission Lines in NGC 5548</title>
      <link>https://escholarship.org/uc/item/5mc2h72z</link>
      <description>In this contribution, we achieve the primary goal of the active galactic nucleus (AGN) STORM campaign by recovering velocity-delay maps for the prominent broad emission lines (Lyα, C iv, He ii, and Hβ) in the spectrum of NGC 5548. These are the most detailed velocity-delay maps ever obtained for an AGN, providing unprecedented information on the geometry, ionization structure, and kinematics of the broad-line region. Virial envelopes enclosing the emission-line responses show that the reverberating gas is bound to the black hole. A stratified ionization structure is evident. The He ii response inside 5-10 lt-day has a broad single-peaked velocity profile. The Lyα, C iv, and Hβ responses extend from inside 2 to outside 20 lt-day, with double peaks at ±2500 km s-1 in the 10-20 lt-day delay range. An incomplete ellipse in the velocity-delay plane is evident in Hβ. We interpret the maps in terms of a Keplerian disk with a well-defined outer rim at R = 20 lt-day. The far-side response...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/5mc2h72z</guid>
      <pubDate>Wed, 8 Jul 2020 00:00:00 +0000</pubDate>
      <author>
        <name>Horne, Keith</name>
      </author>
      <author>
        <name>De Rosa, G</name>
      </author>
      <author>
        <name>Peterson, BM</name>
      </author>
      <author>
        <name>Barth, AJ</name>
        <uri>https://orcid.org/0000-0002-3026-0562</uri>
      </author>
      <author>
        <name>Ely, J</name>
      </author>
      <author>
        <name>Fausnaugh, MM</name>
      </author>
      <author>
        <name>Kriss, GA</name>
      </author>
      <author>
        <name>Pei, L</name>
      </author>
      <author>
        <name>Bentz, MC</name>
      </author>
      <author>
        <name>Cackett, EM</name>
      </author>
      <author>
        <name>Edelson, R</name>
      </author>
      <author>
        <name>Eracleous, M</name>
      </author>
      <author>
        <name>Goad, MR</name>
      </author>
      <author>
        <name>Grier, CJ</name>
      </author>
      <author>
        <name>Kaastra, J</name>
      </author>
      <author>
        <name>Kochanek, CS</name>
      </author>
      <author>
        <name>Krongold, Y</name>
      </author>
      <author>
        <name>Mathur, S</name>
      </author>
      <author>
        <name>Netzer, H</name>
      </author>
      <author>
        <name>Proga, D</name>
      </author>
      <author>
        <name>Tejos, N</name>
      </author>
      <author>
        <name>Vestergaard, M</name>
      </author>
      <author>
        <name>Villforth, C</name>
      </author>
      <author>
        <name>Adams, SM</name>
      </author>
      <author>
        <name>Anderson, MD</name>
      </author>
      <author>
        <name>Arévalo, P</name>
      </author>
      <author>
        <name>Beatty, TG</name>
      </author>
      <author>
        <name>Bennert, VN</name>
      </author>
      <author>
        <name>Bigley, A</name>
      </author>
      <author>
        <name>Bisogni, S</name>
      </author>
      <author>
        <name>Borman, GA</name>
      </author>
      <author>
        <name>Boroson, TA</name>
      </author>
      <author>
        <name>Bottorff, MC</name>
      </author>
      <author>
        <name>Brandt, WN</name>
      </author>
      <author>
        <name>Breeveld, AA</name>
      </author>
      <author>
        <name>Brotherton, M</name>
      </author>
      <author>
        <name>Brown, JE</name>
      </author>
      <author>
        <name>Brown, JS</name>
      </author>
      <author>
        <name>Canalizo, G</name>
      </author>
      <author>
        <name>Carini, MT</name>
      </author>
      <author>
        <name>Clubb, KI</name>
      </author>
      <author>
        <name>Comerford, JM</name>
      </author>
      <author>
        <name>Corsini, EM</name>
      </author>
      <author>
        <name>Crenshaw, DM</name>
      </author>
      <author>
        <name>Croft, S</name>
      </author>
      <author>
        <name>Croxall, KV</name>
      </author>
      <author>
        <name>Bontà, E Dalla</name>
      </author>
      <author>
        <name>Deason, AJ</name>
      </author>
      <author>
        <name>Dehghanian, M</name>
      </author>
      <author>
        <name>De Lorenzo-Cáceres, A</name>
      </author>
      <author>
        <name>Denney, KD</name>
      </author>
      <author>
        <name>Dietrich, M</name>
      </author>
      <author>
        <name>Done, C</name>
      </author>
      <author>
        <name>Efimova, NV</name>
      </author>
      <author>
        <name>Evans, PA</name>
      </author>
      <author>
        <name>Ferland, GJ</name>
      </author>
      <author>
        <name>Filippenko, AV</name>
        <uri>https://orcid.org/0000-0003-3460-0103</uri>
      </author>
      <author>
        <name>Flatland, K</name>
      </author>
      <author>
        <name>Fox, OD</name>
      </author>
      <author>
        <name>Gardner, E</name>
      </author>
      <author>
        <name>Gates, EL</name>
      </author>
      <author>
        <name>Gehrels, N</name>
      </author>
      <author>
        <name>Geier, S</name>
      </author>
      <author>
        <name>Gelbord, JM</name>
      </author>
      <author>
        <name>Gonzalez, L</name>
      </author>
      <author>
        <name>Gorjian, V</name>
      </author>
      <author>
        <name>Greene, JE</name>
      </author>
      <author>
        <name>Grupe, D</name>
      </author>
      <author>
        <name>Gupta, A</name>
      </author>
      <author>
        <name>Hall, PB</name>
      </author>
      <author>
        <name>Henderson, CB</name>
      </author>
      <author>
        <name>Hicks, S</name>
      </author>
      <author>
        <name>Holmbeck, E</name>
      </author>
      <author>
        <name>Holoien, TW-S</name>
      </author>
      <author>
        <name>Hutchison, T</name>
      </author>
      <author>
        <name>Im, M</name>
      </author>
      <author>
        <name>Jensen, JJ</name>
      </author>
      <author>
        <name>Johnson, CA</name>
      </author>
      <author>
        <name>Joner, MD</name>
      </author>
      <author>
        <name>Jones, J</name>
      </author>
      <author>
        <name>Kaspi, S</name>
      </author>
      <author>
        <name>Kelly, PL</name>
      </author>
      <author>
        <name>Kennea, JA</name>
      </author>
      <author>
        <name>Kim, M</name>
      </author>
      <author>
        <name>Kim, S</name>
      </author>
      <author>
        <name>Kim, SC</name>
      </author>
      <author>
        <name>King, A</name>
      </author>
      <author>
        <name>Klimanov, SA</name>
      </author>
      <author>
        <name>Korista, KT</name>
      </author>
      <author>
        <name>Lau, MW</name>
      </author>
      <author>
        <name>Lee, JC</name>
      </author>
      <author>
        <name>Leonard, DC</name>
      </author>
      <author>
        <name>Li, Miao</name>
      </author>
      <author>
        <name>Lira, P</name>
      </author>
      <author>
        <name>Lochhaas, C</name>
      </author>
      <author>
        <name>Ma, Zhiyuan</name>
      </author>
      <author>
        <name>MacInnis, F</name>
      </author>
      <author>
        <name>Malkan, MA</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
      <author>
        <name>Manne-Nicholas, ER</name>
      </author>
      <author>
        <name>Mauerhan, JC</name>
      </author>
    </item>
    <item>
      <title>PypeIt: The Python Spectroscopic Data Reduction Pipeline</title>
      <link>https://escholarship.org/uc/item/1j62j00j</link>
      <description>PypeIt is a Python package for semi-automated reduction of astronomical,
spectroscopic data. Its algorithms build on decades-long development of
previous data reduction pipelines by the developers (Bernstein, Burles, &amp;amp;
Prochaska, 2015; Bochanski et al., 2009). The reduction procedure -- including
a complete list of the input parameters and available functionality -- is
provided as online documentation hosted by Read the Docs, which is regularly
updated. (https://pypeit.readthedocs.io/en/latest/). Release v1.0.3 serves the
following spectrographs: Gemini/GNIRS, Gemini/GMOS, Gemini/FLAMINGOS 2,
Lick/Kast, Magellan/MagE, Magellan/Fire, MDM/OSMOS, Keck/DEIMOS (600ZD, 830G,
1200G), Keck/LRIS, Keck/MOSFIRE (J and Y gratings tested), Keck/NIRES,
Keck/NIRSPEC (low-dispersion), LBT/Luci-I, Luci-II, LBT/MODS (beta), NOT/ALFOSC
(grism4), VLT/X-Shooter (VIS, NIR), VLT/FORS2 (300I, 300V), WHT/ISIS.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/1j62j00j</guid>
      <pubDate>Tue, 7 Jul 2020 00:00:00 +0000</pubDate>
      <author>
        <name>Prochaska, J</name>
      </author>
      <author>
        <name>Hennawi, Joseph</name>
      </author>
      <author>
        <name>Westfall, Kyle</name>
      </author>
      <author>
        <name>Cooke, Ryan</name>
      </author>
      <author>
        <name>Wang, Feige</name>
      </author>
      <author>
        <name>Hsyu, Tiffany</name>
      </author>
      <author>
        <name>Davies, Frederick</name>
      </author>
      <author>
        <name>Farina, Emanuele</name>
      </author>
      <author>
        <name>Pelliccia, Debora</name>
      </author>
    </item>
    <item>
      <title>Effects of Stellar Feedback on Stellar and Gas Kinematics of Star-forming Galaxies at 0.6 &amp;lt; z &amp;lt; 1.0</title>
      <link>https://escholarship.org/uc/item/8ff3d7x3</link>
      <description>Recent zoom-in cosmological simulations have shown that stellar feedback can flatten the inner density profile of the dark matter halo in low-mass galaxies. A correlation between the stellar/gas velocity dispersion (σstar, σgas) and the specific star formation rate (sSFR) is predicted as an observational test of the role of stellar feedback in re-shaping the dark matter density profile. In this work we test the validity of this prediction by studying a sample of star-forming galaxies at 0.6 &amp;lt; z &amp;lt; 1.0 from the LEGA-C survey, which provides high signal-to-noise measurements of stellar and gas kinematics. We find that a weak but significant correlation between σstar (and σgas) and sSFR indeed exists for galaxies in the lowest mass bin (M* ∼ 1010 M⊙). This correlation, albeit with a ∼35% scatter, holds for different tracers of star formation, and becomes stronger with redshift. This result generally agrees with the picture that at higher redshifts star formation rate was generally...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/8ff3d7x3</guid>
      <pubDate>Wed, 10 Jun 2020 00:00:00 +0000</pubDate>
      <author>
        <name>Pelliccia, Debora</name>
        <uri>https://orcid.org/0000-0002-3007-0013</uri>
      </author>
      <author>
        <name>Mobasher, Bahram</name>
        <uri>https://orcid.org/0000-0001-5846-4404</uri>
      </author>
      <author>
        <name>Darvish, Behnam</name>
      </author>
      <author>
        <name>Lemaux, Brian C</name>
      </author>
      <author>
        <name>Lubin, Lori M</name>
        <uri>https://orcid.org/0000-0003-2119-8151</uri>
      </author>
      <author>
        <name>Hirtenstein, Jessie</name>
      </author>
      <author>
        <name>Shen, Lu</name>
      </author>
      <author>
        <name>Wu, Po-Feng</name>
      </author>
      <author>
        <name>El-Badry, Kareem</name>
      </author>
      <author>
        <name>Wetzel, Andrew</name>
        <uri>https://orcid.org/0000-0003-0603-8942</uri>
      </author>
      <author>
        <name>Jones, Tucker</name>
        <uri>https://orcid.org/0000-0001-5860-3419</uri>
      </author>
    </item>
    <item>
      <title>HALO7D II: The Halo Velocity Ellipsoid and Velocity Anisotropy with Distant Main-sequence Stars</title>
      <link>https://escholarship.org/uc/item/7kn6z3zw</link>
      <description>The Halo Assembly in Lambda Cold Dark Matter: Observations in 7 Dimensions (HALO7D) data set consists of Keck II/DEIMOS spectroscopy and Hubble Space Telescope–measured proper motions of Milky Way halo main-sequence turnoff stars in the CANDELS fields. In this paper, the second in the HALO7D series, we present the proper motions for the HALO7D sample. We discuss our measurement methodology, which makes use of a Bayesian mixture modeling approach for creating the stationary reference frame of distant galaxies. Using the 3D kinematic HALO7D sample, we estimate the parameters of the halo velocity ellipsoid, , and the velocity anisotropy β. Using the full HALO7D sample, we find at kpc. We also estimate the ellipsoid parameters for our sample split into three apparent magnitude bins; the posterior medians for these estimates of β are consistent with one another. Finally, we estimate β in each of the individual HALO7D fields. We find that the velocity anisotropy β can vary from field-to...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/7kn6z3zw</guid>
      <pubDate>Wed, 10 Jun 2020 00:00:00 +0000</pubDate>
      <author>
        <name>Cunningham, Emily C</name>
      </author>
      <author>
        <name>Deason, Alis J</name>
      </author>
      <author>
        <name>Sanderson, Robyn E</name>
      </author>
      <author>
        <name>Sohn, Sangmo Tony</name>
      </author>
      <author>
        <name>Anderson, Jay</name>
      </author>
      <author>
        <name>Guhathakurta, Puragra</name>
      </author>
      <author>
        <name>Rockosi, Constance M</name>
      </author>
      <author>
        <name>van der Marel, Roeland P</name>
      </author>
      <author>
        <name>Loebman, Sarah R</name>
      </author>
      <author>
        <name>Wetzel, Andrew</name>
        <uri>https://orcid.org/0000-0003-0603-8942</uri>
      </author>
    </item>
    <item>
      <title>Searching for exoplanets using a microresonator astrocomb</title>
      <link>https://escholarship.org/uc/item/2531p63m</link>
      <description>Orbiting planets induce a weak radial velocity (RV) shift in the host star that provides a powerful method of planet detection. Importantly, the RV technique provides information about the exoplanet mass, which is unavailable with the complementary technique of transit photometry. However, RV detection of an Earth-like planet in the ‘habitable zone’1 requires extreme spectroscopic precision that is only possible using a laser frequency comb (LFC)2. Conventional LFCs require complex filtering steps to be compatible with astronomical spectrographs, but a new chip-based microresonator device, the Kerr soliton microcomb3–8, is an ideal match for astronomical spectrograph resolution and can eliminate these filtering steps. Here, we demonstrate an atomic/molecular line-referenced soliton microcomb for calibration of astronomical spectrographs. These devices can ultimately provide LFC systems that would occupy only a few cubic centimetres9,10, thereby greatly expanding implementation...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/2531p63m</guid>
      <pubDate>Sat, 16 May 2020 00:00:00 +0000</pubDate>
      <author>
        <name>Suh, Myoung-Gyun</name>
      </author>
      <author>
        <name>Yi, Xu</name>
      </author>
      <author>
        <name>Lai, Yu-Hung</name>
      </author>
      <author>
        <name>Leifer, S</name>
      </author>
      <author>
        <name>Grudinin, Ivan S</name>
      </author>
      <author>
        <name>Vasisht, G</name>
      </author>
      <author>
        <name>Martin, Emily C</name>
        <uri>https://orcid.org/0000-0002-0618-5128</uri>
      </author>
      <author>
        <name>Fitzgerald, Michael P</name>
        <uri>https://orcid.org/0000-0002-0176-8973</uri>
      </author>
      <author>
        <name>Doppmann, G</name>
      </author>
      <author>
        <name>Wang, J</name>
      </author>
      <author>
        <name>Mawet, D</name>
      </author>
      <author>
        <name>Papp, Scott B</name>
      </author>
      <author>
        <name>Diddams, Scott A</name>
      </author>
      <author>
        <name>Beichman, C</name>
      </author>
      <author>
        <name>Vahala, Kerry</name>
      </author>
    </item>
    <item>
      <title>Deep ugrizY imaging and DEEP2/3 spectroscopy: a photometric redshift testbed for LSST and public release of data from the DEEP3 Galaxy Redshift Survey</title>
      <link>https://escholarship.org/uc/item/16x0j072</link>
      <description>ABSTRACT
                  We present catalogues of calibrated photometry and spectroscopic redshifts in the Extended Groth Strip, intended for studies of photometric redshifts (photo-z’s). The data includes ugriz photometry from Canada–France–Hawaii Telescope Legacy Survey (CFHTLS) and Y-band photometry from the Subaru Suprime camera, as well as spectroscopic redshifts from the DEEP2, DEEP3, and 3D-HST surveys. These catalogues incorporate corrections to produce effectively matched-aperture photometry across all bands, based upon object size information available in the catalogue and Moffat profile point spread function fits. We test this catalogue with a simple machine learning-based photometric redshift algorithm based upon Random Forest regression, and find that the corrected aperture photometry leads to significant improvement in photo-z accuracy compared to the original SExtractor catalogues from CFHTLS and Subaru. The deep ugrizY photometry and spectroscopic redshifts are...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/16x0j072</guid>
      <pubDate>Tue, 12 Nov 2019 00:00:00 +0000</pubDate>
      <author>
        <name>Zhou, Rongpu</name>
        <uri>https://orcid.org/0000-0001-5381-4372</uri>
      </author>
      <author>
        <name>Cooper, Michael C</name>
        <uri>https://orcid.org/0000-0003-1371-6019</uri>
      </author>
      <author>
        <name>Newman, Jeffrey A</name>
      </author>
      <author>
        <name>Ashby, Matthew LN</name>
      </author>
      <author>
        <name>Aird, James</name>
      </author>
      <author>
        <name>Conselice, Christopher J</name>
      </author>
      <author>
        <name>Davis, Marc</name>
      </author>
      <author>
        <name>Dutton, Aaron A</name>
      </author>
      <author>
        <name>Faber, SM</name>
      </author>
      <author>
        <name>Fang, Jerome J</name>
      </author>
      <author>
        <name>Fazio, GG</name>
      </author>
      <author>
        <name>Guhathakurta, Puragra</name>
      </author>
      <author>
        <name>Kocevski, Dale</name>
      </author>
      <author>
        <name>Koo, David C</name>
        <uri>https://orcid.org/0000-0003-3385-6799</uri>
      </author>
      <author>
        <name>Nandra, Kirpal</name>
      </author>
      <author>
        <name>Phillips, Andrew C</name>
      </author>
      <author>
        <name>Rosario, David J</name>
      </author>
      <author>
        <name>Schlafly, Edward F</name>
        <uri>https://orcid.org/0000-0002-3569-7421</uri>
      </author>
      <author>
        <name>Trump, Jonathan R</name>
      </author>
      <author>
        <name>Weiner, Benjamin</name>
      </author>
      <author>
        <name>Willmer, Christopher NA</name>
      </author>
      <author>
        <name>Yan, Renbin</name>
      </author>
    </item>
    <item>
      <title>The Fifteenth Data Release of the Sloan Digital Sky Surveys: First Release of MaNGA-derived Quantities, Data Visualization Tools, and Stellar Library</title>
      <link>https://escholarship.org/uc/item/9fp0m8s1</link>
      <description>Twenty years have passed since first light for the Sloan Digital Sky Survey (SDSS). Here, we release data taken by the fourth phase of SDSS (SDSS-IV) across its first three years of operation (2014 July–2017 July). This is the third data release for SDSS-IV, and the 15th from SDSS (Data Release Fifteen; DR15). New data come from MaNGA—we release 4824 data cubes, as well as the first stellar spectra in the MaNGA Stellar Library (MaStar), the first set of survey-supported analysis products (e.g., stellar and gas kinematics, emission-line and other maps) from the MaNGA Data Analysis Pipeline, and a new data visualization and access tool we call “Marvin.” The next data release, DR16, will include new data from both APOGEE-2 and eBOSS; those surveys release no new data here, but we document updates and corrections to their data processing pipelines. The release is cumulative; it also includes the most recent reductions and calibrations of all data taken by SDSS since first light. In...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/9fp0m8s1</guid>
      <pubDate>Fri, 27 Sep 2019 00:00:00 +0000</pubDate>
      <author>
        <name>Aguado, DS</name>
      </author>
      <author>
        <name>Ahumada, Romina</name>
      </author>
      <author>
        <name>Almeida, Andrés</name>
      </author>
      <author>
        <name>Anderson, Scott F</name>
      </author>
      <author>
        <name>Andrews, Brett H</name>
      </author>
      <author>
        <name>Anguiano, Borja</name>
      </author>
      <author>
        <name>Ortíz, Erik Aquino</name>
      </author>
      <author>
        <name>Aragón-Salamanca, Alfonso</name>
      </author>
      <author>
        <name>Argudo-Fernández, Maria</name>
      </author>
      <author>
        <name>Aubert, Marie</name>
      </author>
      <author>
        <name>Avila-Reese, Vladimir</name>
      </author>
      <author>
        <name>Badenes, Carles</name>
      </author>
      <author>
        <name>Rembold, Sandro Barboza</name>
      </author>
      <author>
        <name>Barger, Kat</name>
      </author>
      <author>
        <name>Barrera-Ballesteros, Jorge</name>
      </author>
      <author>
        <name>Bates, Dominic</name>
      </author>
      <author>
        <name>Bautista, Julian</name>
      </author>
      <author>
        <name>Beaton, Rachael L</name>
      </author>
      <author>
        <name>Beers, Timothy C</name>
      </author>
      <author>
        <name>Belfiore, Francesco</name>
      </author>
      <author>
        <name>Bernardi, Mariangela</name>
      </author>
      <author>
        <name>Bershady, Matthew</name>
      </author>
      <author>
        <name>Beutler, Florian</name>
      </author>
      <author>
        <name>Bird, Jonathan</name>
      </author>
      <author>
        <name>Bizyaev, Dmitry</name>
      </author>
      <author>
        <name>Blanc, Guillermo A</name>
      </author>
      <author>
        <name>Blanton, Michael R</name>
      </author>
      <author>
        <name>Blomqvist, Michael</name>
      </author>
      <author>
        <name>Bolton, Adam S</name>
      </author>
      <author>
        <name>Boquien, Médéric</name>
      </author>
      <author>
        <name>Borissova, Jura</name>
      </author>
      <author>
        <name>Bovy, Jo</name>
      </author>
      <author>
        <name>Brandt, William Nielsen</name>
      </author>
      <author>
        <name>Brinkmann, Jonathan</name>
      </author>
      <author>
        <name>Brownstein, Joel R</name>
      </author>
      <author>
        <name>Bundy, Kevin</name>
      </author>
      <author>
        <name>Burgasser, Adam</name>
        <uri>https://orcid.org/0000-0002-6523-9536</uri>
      </author>
      <author>
        <name>Byler, Nell</name>
      </author>
      <author>
        <name>Diaz, Mariana Cano</name>
      </author>
      <author>
        <name>Cappellari, Michele</name>
      </author>
      <author>
        <name>Carrera, Ricardo</name>
      </author>
      <author>
        <name>Sodi, Bernardo Cervantes</name>
      </author>
      <author>
        <name>Chen, Yanping</name>
      </author>
      <author>
        <name>Cherinka, Brian</name>
      </author>
      <author>
        <name>Choi, Peter Doohyun</name>
      </author>
      <author>
        <name>Chung, Haeun</name>
      </author>
      <author>
        <name>Coffey, Damien</name>
      </author>
      <author>
        <name>Comerford, Julia M</name>
      </author>
      <author>
        <name>Comparat, Johan</name>
      </author>
      <author>
        <name>Covey, Kevin</name>
      </author>
      <author>
        <name>da Silva Ilha, Gabriele</name>
      </author>
      <author>
        <name>da Costa, Luiz</name>
      </author>
      <author>
        <name>Dai, Yu Sophia</name>
      </author>
      <author>
        <name>Damke, Guillermo</name>
      </author>
      <author>
        <name>Darling, Jeremy</name>
      </author>
      <author>
        <name>Davies, Roger</name>
      </author>
      <author>
        <name>Dawson, Kyle</name>
      </author>
      <author>
        <name>de Sainte Agathe, Victoria</name>
      </author>
      <author>
        <name>Machado, Alice Deconto</name>
      </author>
      <author>
        <name>Del Moro, Agnese</name>
      </author>
      <author>
        <name>De Lee, Nathan</name>
      </author>
      <author>
        <name>Diamond-Stanic, Aleksandar M</name>
      </author>
      <author>
        <name>Sánchez, Helena Domínguez</name>
      </author>
      <author>
        <name>Donor, John</name>
      </author>
      <author>
        <name>Drory, Niv</name>
      </author>
      <author>
        <name>du Mas des Bourboux, Hélion</name>
      </author>
      <author>
        <name>Duckworth, Chris</name>
      </author>
      <author>
        <name>Dwelly, Tom</name>
      </author>
      <author>
        <name>Ebelke, Garrett</name>
      </author>
      <author>
        <name>Emsellem, Eric</name>
      </author>
      <author>
        <name>Escoffier, Stephanie</name>
      </author>
      <author>
        <name>Fernández-Trincado, José G</name>
      </author>
      <author>
        <name>Feuillet, Diane</name>
      </author>
      <author>
        <name>Fischer, Johanna-Laina</name>
      </author>
      <author>
        <name>Fleming, Scott W</name>
      </author>
      <author>
        <name>Fraser-McKelvie, Amelia</name>
      </author>
      <author>
        <name>Freischlad, Gordon</name>
      </author>
      <author>
        <name>Frinchaboy, Peter M</name>
      </author>
      <author>
        <name>Fu, Hai</name>
      </author>
      <author>
        <name>Galbany, Lluís</name>
      </author>
      <author>
        <name>Garcia-Dias, Rafael</name>
      </author>
      <author>
        <name>García-Hernández, DA</name>
      </author>
      <author>
        <name>Oehmichen, Luis Alberto Garma</name>
      </author>
      <author>
        <name>Maia, Marcio Antonio Geimba</name>
      </author>
      <author>
        <name>Gil-Marín, Héctor</name>
      </author>
      <author>
        <name>Grabowski, Kathleen</name>
      </author>
      <author>
        <name>Gu, Meng</name>
      </author>
      <author>
        <name>Guo, Hong</name>
      </author>
      <author>
        <name>Ha, Jaewon</name>
      </author>
      <author>
        <name>Harrington, Emily</name>
      </author>
      <author>
        <name>Hasselquist, Sten</name>
      </author>
      <author>
        <name>Hayes, Christian R</name>
      </author>
      <author>
        <name>Hearty, Fred</name>
      </author>
      <author>
        <name>Toledo, Hector Hernandez</name>
      </author>
      <author>
        <name>Hicks, Harry</name>
      </author>
      <author>
        <name>Hogg, David W</name>
      </author>
      <author>
        <name>Holley-Bockelmann, Kelly</name>
      </author>
      <author>
        <name>Holtzman, Jon A</name>
      </author>
      <author>
        <name>Hsieh, Bau-Ching</name>
      </author>
      <author>
        <name>Hunt, Jason AS</name>
      </author>
    </item>
    <item>
      <title>The Lick AGN Monitoring Project 2011: Dynamical Modeling of the Broad-line Region</title>
      <link>https://escholarship.org/uc/item/804073m6</link>
      <description>We present models of the Hβ-emitting broad-line region (BLR) in seven Seyfert 1 galaxies from the Lick AGN Monitoring Project 2011 sample, drawing inferences on the BLR structure and dynamics as well as the mass of the central supermassive black hole. We find that the BLR is generally a thick disk, viewed close to face-on, with preferential emission back toward the ionizing source. The dynamics in our sample range from near-circular elliptical orbits to inflowing or outflowing trajectories. We measure black hole masses of for PG 1310-108, for Mrk 50, for Mrk 141, for Mrk 279, for Mrk 1511, for NGC 4593, and for Zw 229-015. We use these black hole mass measurements along with cross-correlation time lags and line widths to recover the scale factor f used in traditional reverberation mapping measurements. Combining our results with other studies that use this modeling technique, which brings our sample size to 16, we calculate a scale factor that can be used for measuring black hole...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/804073m6</guid>
      <pubDate>Tue, 27 Aug 2019 00:00:00 +0000</pubDate>
      <author>
        <name>Williams, Peter R</name>
      </author>
      <author>
        <name>Pancoast, Anna</name>
      </author>
      <author>
        <name>Treu, Tommaso</name>
        <uri>https://orcid.org/0000-0002-8460-0390</uri>
      </author>
      <author>
        <name>Brewer, Brendon J</name>
      </author>
      <author>
        <name>Barth, Aaron J</name>
        <uri>https://orcid.org/0000-0002-3026-0562</uri>
      </author>
      <author>
        <name>Bennert, Vardha N</name>
      </author>
      <author>
        <name>Buehler, Tabitha</name>
      </author>
      <author>
        <name>Canalizo, Gabriela</name>
      </author>
      <author>
        <name>Cenko, S Bradley</name>
      </author>
      <author>
        <name>Clubb, Kelsey I</name>
      </author>
      <author>
        <name>Cooper, Michael C</name>
        <uri>https://orcid.org/0000-0003-1371-6019</uri>
      </author>
      <author>
        <name>Filippenko, Alexei V</name>
        <uri>https://orcid.org/0000-0003-3460-0103</uri>
      </author>
      <author>
        <name>Gates, Elinor</name>
      </author>
      <author>
        <name>Hoenig, Sebastian F</name>
      </author>
      <author>
        <name>Joner, Michael D</name>
      </author>
      <author>
        <name>Kandrashoff, Michael T</name>
      </author>
      <author>
        <name>Laney, Clifton David</name>
      </author>
      <author>
        <name>Lazarova, Mariana S</name>
      </author>
      <author>
        <name>Li, Weidong</name>
      </author>
      <author>
        <name>Malkan, Matthew A</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
      <author>
        <name>Rex, Jacob</name>
      </author>
      <author>
        <name>Silverman, Jeffrey M</name>
      </author>
      <author>
        <name>Tollerud, Erik</name>
      </author>
      <author>
        <name>Walsh, Jonelle L</name>
      </author>
      <author>
        <name>Woo, Jong-Hak</name>
      </author>
    </item>
    <item>
      <title>Space Telescope and Optical Reverberation Mapping Project. VIII. Time Variability of Emission and Absorption in NGC 5548 Based on Modeling the Ultraviolet Spectrum</title>
      <link>https://escholarship.org/uc/item/1h21b72k</link>
      <description>We model the ultraviolet spectra of the Seyfert 1 galaxy NGC 5548 obtained with the Hubble Space Telescope during the 6 month reverberation mapping campaign in 2014. Our model of the emission from NGC 5548 corrects for overlying absorption and deblends the individual emission lines. Using the modeled spectra, we measure the response to continuum variations for the deblended and absorption-corrected individual broad emission lines, the velocity-dependent profiles of Ly and C iv, and the narrow and broad intrinsic absorption features. We find that the time lags for the corrected emission lines are comparable to those for the original data. The velocity-binned lag profiles of Ly and C iv have a double-peaked structure indicative of a truncated Keplerian disk. The narrow absorption lines show a delayed response to continuum variations corresponding to recombination in gas with a density of ∼105 cm-3. The high-ionization narrow absorption lines decorrelate from continuum variations...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/1h21b72k</guid>
      <pubDate>Wed, 24 Jul 2019 00:00:00 +0000</pubDate>
      <author>
        <name>Kriss, GA</name>
      </author>
      <author>
        <name>De Rosa, G</name>
      </author>
      <author>
        <name>Ely, J</name>
      </author>
      <author>
        <name>Peterson, BM</name>
      </author>
      <author>
        <name>Kaastra, J</name>
      </author>
      <author>
        <name>Mehdipour, M</name>
      </author>
      <author>
        <name>Ferland, GJ</name>
      </author>
      <author>
        <name>Dehghanian, M</name>
      </author>
      <author>
        <name>Mathur, S</name>
      </author>
      <author>
        <name>Edelson, R</name>
      </author>
      <author>
        <name>Korista, KT</name>
      </author>
      <author>
        <name>Arav, N</name>
      </author>
      <author>
        <name>Barth, AJ</name>
        <uri>https://orcid.org/0000-0002-3026-0562</uri>
      </author>
      <author>
        <name>Bentz, MC</name>
      </author>
      <author>
        <name>Brandt, WN</name>
      </author>
      <author>
        <name>Crenshaw, DM</name>
      </author>
      <author>
        <name>Bontà, E Dalla</name>
      </author>
      <author>
        <name>Denney, KD</name>
      </author>
      <author>
        <name>Done, C</name>
      </author>
      <author>
        <name>Eracleous, M</name>
      </author>
      <author>
        <name>Fausnaugh, MM</name>
      </author>
      <author>
        <name>Gardner, E</name>
      </author>
      <author>
        <name>Goad, MR</name>
      </author>
      <author>
        <name>Grier, CJ</name>
      </author>
      <author>
        <name>Horne, Keith</name>
      </author>
      <author>
        <name>Kochanek, CS</name>
      </author>
      <author>
        <name>McHardy, IM</name>
      </author>
      <author>
        <name>Netzer, H</name>
      </author>
      <author>
        <name>Pancoast, A</name>
      </author>
      <author>
        <name>Pei, L</name>
      </author>
      <author>
        <name>Pogge, RW</name>
      </author>
      <author>
        <name>Proga, D</name>
      </author>
      <author>
        <name>Silva, C</name>
      </author>
      <author>
        <name>Tejos, N</name>
      </author>
      <author>
        <name>Vestergaard, M</name>
      </author>
      <author>
        <name>Adams, SM</name>
      </author>
      <author>
        <name>Anderson, MD</name>
      </author>
      <author>
        <name>Arévalo, P</name>
      </author>
      <author>
        <name>Beatty, TG</name>
      </author>
      <author>
        <name>Behar, E</name>
      </author>
      <author>
        <name>Bennert, VN</name>
      </author>
      <author>
        <name>Bianchi, S</name>
      </author>
      <author>
        <name>Bigley, A</name>
      </author>
      <author>
        <name>Bisogni, S</name>
      </author>
      <author>
        <name>Boissay-Malaquin, R</name>
      </author>
      <author>
        <name>Borman, GA</name>
      </author>
      <author>
        <name>Bottorff, MC</name>
      </author>
      <author>
        <name>Breeveld, AA</name>
      </author>
      <author>
        <name>Brotherton, M</name>
      </author>
      <author>
        <name>Brown, JE</name>
      </author>
      <author>
        <name>Brown, JS</name>
      </author>
      <author>
        <name>Cackett, EM</name>
      </author>
      <author>
        <name>Canalizo, G</name>
      </author>
      <author>
        <name>Cappi, M</name>
      </author>
      <author>
        <name>Carini, MT</name>
      </author>
      <author>
        <name>Clubb, KI</name>
      </author>
      <author>
        <name>Comerford, JM</name>
      </author>
      <author>
        <name>Coker, CT</name>
      </author>
      <author>
        <name>Corsini, EM</name>
      </author>
      <author>
        <name>Costantini, E</name>
      </author>
      <author>
        <name>Croft, S</name>
      </author>
      <author>
        <name>Croxall, KV</name>
      </author>
      <author>
        <name>Deason, AJ</name>
      </author>
      <author>
        <name>De Lorenzo-Cáceres, A</name>
      </author>
      <author>
        <name>De Marco, B</name>
      </author>
      <author>
        <name>Dietrich, M</name>
      </author>
      <author>
        <name>Di Gesu, L</name>
      </author>
      <author>
        <name>Ebrero, J</name>
      </author>
      <author>
        <name>Evans, PA</name>
      </author>
      <author>
        <name>Filippenko, AV</name>
        <uri>https://orcid.org/0000-0003-3460-0103</uri>
      </author>
      <author>
        <name>Flatland, K</name>
      </author>
      <author>
        <name>Gates, EL</name>
      </author>
      <author>
        <name>Gehrels, N</name>
      </author>
      <author>
        <name>Geier, S</name>
      </author>
      <author>
        <name>Gelbord, JM</name>
      </author>
      <author>
        <name>Gonzalez, L</name>
      </author>
      <author>
        <name>Gorjian, V</name>
      </author>
      <author>
        <name>Grupe, D</name>
      </author>
      <author>
        <name>Gupta, A</name>
      </author>
      <author>
        <name>Hall, PB</name>
      </author>
      <author>
        <name>Henderson, CB</name>
      </author>
      <author>
        <name>Hicks, S</name>
      </author>
      <author>
        <name>Holmbeck, E</name>
      </author>
      <author>
        <name>Holoien, TW-S</name>
      </author>
      <author>
        <name>Hutchison, TA</name>
      </author>
      <author>
        <name>Im, M</name>
      </author>
      <author>
        <name>Jensen, JJ</name>
      </author>
      <author>
        <name>Johnson, CA</name>
      </author>
      <author>
        <name>Joner, MD</name>
      </author>
      <author>
        <name>Kaspi, S</name>
      </author>
      <author>
        <name>Kelly, BC</name>
      </author>
      <author>
        <name>Kelly, PL</name>
      </author>
      <author>
        <name>Kennea, JA</name>
      </author>
      <author>
        <name>Kim, M</name>
      </author>
      <author>
        <name>Kim, SC</name>
      </author>
      <author>
        <name>Kim, SY</name>
      </author>
      <author>
        <name>King, A</name>
      </author>
      <author>
        <name>Klimanov, SA</name>
      </author>
      <author>
        <name>Krongold, Y</name>
      </author>
      <author>
        <name>Lau, MW</name>
      </author>
    </item>
    <item>
      <title>The Sloan Digital Sky Survey quasar catalog: tenth data release</title>
      <link>https://escholarship.org/uc/item/6d71m0bj</link>
      <description>We present the second edition of the Sloan Digital Sky Survey (SDSS) Quasar Catalog. The catalog consists of the 16,713 objects in the SDSS First Data Release that have luminosities larger than Mi = -22 (in a cosmology with H0 = 70 km s-1 Mpc-1, ΩM= 0.3, and Ω∇ = 0.7), have at least one emission line with FWHM larger than 1000 km s-1, and have highly reliable redshifts. The area covered by the catalog is ≈ 1360 deg 2. The quasar redshifts range from 0.08 to 5.41, with a median value of 1.43. For each object, the catalog presents positions accurate to better than 0.′2 rms per coordinate, five-band (ugriz) CCD-based photometry with typical accuracy of 0.03 mag, and information on the morphology and selection method. The catalog also contains some radio, near-infrared, and X-ray emission properties of the quasars, when available, from other large-area surveys. Calibrated digital spectra of all objects in the catalog, covering the wavelength region 3800-9200 Å at a spectral resolution...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/6d71m0bj</guid>
      <pubDate>Tue, 19 Mar 2019 00:00:00 +0000</pubDate>
      <author>
        <name>Paris, Isabelle</name>
      </author>
      <author>
        <name>Petitjean, Patrick</name>
      </author>
      <author>
        <name>Aubourg, Eric</name>
      </author>
      <author>
        <name>Ross, Nicholas P</name>
      </author>
      <author>
        <name>Myers, Adam D</name>
      </author>
      <author>
        <name>Streblyanska, Alina</name>
      </author>
      <author>
        <name>Bailey, Stephen</name>
      </author>
      <author>
        <name>Hall, Patrick B</name>
      </author>
      <author>
        <name>Strauss, Michael A</name>
      </author>
      <author>
        <name>Anderson, Scott F</name>
      </author>
      <author>
        <name>Bizyaev, Dmitry</name>
      </author>
      <author>
        <name>Borde, Arnaud</name>
      </author>
      <author>
        <name>Brinkmann, J</name>
      </author>
      <author>
        <name>Bovy, Jo</name>
      </author>
      <author>
        <name>Brandt, William N</name>
      </author>
      <author>
        <name>Brewington, Howard</name>
      </author>
      <author>
        <name>Brownstein, Joel R</name>
      </author>
      <author>
        <name>Cook, Benjamin A</name>
      </author>
      <author>
        <name>Ebelke, Garrett</name>
      </author>
      <author>
        <name>Fan, Xiaohui</name>
      </author>
      <author>
        <name>Ak, Nurten Filiz</name>
      </author>
      <author>
        <name>Finley, Hayley</name>
      </author>
      <author>
        <name>Font-Ribera, Andreu</name>
      </author>
      <author>
        <name>Ge, Jian</name>
      </author>
      <author>
        <name>Hamann, Fred</name>
      </author>
      <author>
        <name>Ho, Shirley</name>
      </author>
      <author>
        <name>Jiang, Linhua</name>
      </author>
      <author>
        <name>Kinemuchi, Karen</name>
      </author>
      <author>
        <name>Malanushenko, Elena</name>
      </author>
      <author>
        <name>Malanushenko, Viktor</name>
      </author>
      <author>
        <name>Marchante, Moses</name>
      </author>
      <author>
        <name>McGreer, Ian D</name>
      </author>
      <author>
        <name>McMahon, Richard G</name>
      </author>
      <author>
        <name>Miralda-Escude, Jordi</name>
      </author>
      <author>
        <name>Muna, Demitri</name>
      </author>
      <author>
        <name>Noterdaeme, Pasquier</name>
      </author>
      <author>
        <name>Oravetz, Daniel</name>
      </author>
      <author>
        <name>Palanque-Delabrouille, Nathalie</name>
      </author>
      <author>
        <name>Pan, Kaike</name>
      </author>
      <author>
        <name>Perez-Fournon, Ismael</name>
      </author>
      <author>
        <name>Pieri, Matthew</name>
      </author>
      <author>
        <name>Riffel, Rogerio</name>
      </author>
      <author>
        <name>Schlegel, David J</name>
        <uri>https://orcid.org/0000-0002-5042-5088</uri>
      </author>
      <author>
        <name>Schneider, Donald P</name>
      </author>
      <author>
        <name>Simmons, Audrey</name>
      </author>
      <author>
        <name>Viel, Matteo</name>
      </author>
      <author>
        <name>Weaver, Benjamin A</name>
      </author>
      <author>
        <name>Wood-Vasey, W Michael</name>
      </author>
      <author>
        <name>Yeche, Christophe</name>
      </author>
      <author>
        <name>York, Donald G</name>
      </author>
    </item>
    <item>
      <title>The Fourteenth Data Release of the Sloan Digital Sky Survey: First Spectroscopic Data from the Extended Baryon Oscillation Spectroscopic Survey and from the Second Phase of the Apache Point Observatory Galactic Evolution Experiment</title>
      <link>https://escholarship.org/uc/item/4q5441zt</link>
      <description>The fourth generation of the Sloan Digital Sky Survey (SDSS-IV) has been in operation since 2014 July. This paper describes the second data release from this phase, and the 14th from SDSS overall (making this Data Release Fourteen or DR14). This release makes the data taken by SDSS-IV in its first two years of operation (2014–2016 July) public. Like all previous SDSS releases, DR14 is cumulative, including the most recent reductions and calibrations of all data taken by SDSS since the first phase began operations in 2000. New in DR14 is the first public release of data from the extended Baryon Oscillation Spectroscopic Survey; the first data from the second phase of the Apache Point Observatory (APO) Galactic Evolution Experiment (APOGEE-2), including stellar parameter estimates from an innovative data-driven machine-learning algorithm known as “The Cannon”; and almost twice as many data cubes from the Mapping Nearby Galaxies at APO (MaNGA) survey as were in the previous release...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/4q5441zt</guid>
      <pubDate>Wed, 29 Aug 2018 00:00:00 +0000</pubDate>
      <author>
        <name>Abolfathi, Bela</name>
      </author>
      <author>
        <name>Aguado, DS</name>
      </author>
      <author>
        <name>Aguilar, Gabriela</name>
      </author>
      <author>
        <name>Prieto, Carlos Allende</name>
      </author>
      <author>
        <name>Almeida, Andres</name>
      </author>
      <author>
        <name>Ananna, Tonima Tasnim</name>
      </author>
      <author>
        <name>Anders, Friedrich</name>
      </author>
      <author>
        <name>Anderson, Scott F</name>
      </author>
      <author>
        <name>Andrews, Brett H</name>
      </author>
      <author>
        <name>Anguiano, Borja</name>
      </author>
      <author>
        <name>Aragón-Salamanca, Alfonso</name>
      </author>
      <author>
        <name>Argudo-Fernández, Maria</name>
      </author>
      <author>
        <name>Armengaud, Eric</name>
      </author>
      <author>
        <name>Ata, Metin</name>
      </author>
      <author>
        <name>Aubourg, Eric</name>
      </author>
      <author>
        <name>Avila-Reese, Vladimir</name>
      </author>
      <author>
        <name>Badenes, Carles</name>
      </author>
      <author>
        <name>Bailey, Stephen</name>
        <uri>https://orcid.org/0000-0003-4162-6619</uri>
      </author>
      <author>
        <name>Balland, Christophe</name>
      </author>
      <author>
        <name>Barger, Kathleen A</name>
      </author>
      <author>
        <name>Barrera-Ballesteros, Jorge</name>
      </author>
      <author>
        <name>Bartosz, Curtis</name>
      </author>
      <author>
        <name>Bastien, Fabienne</name>
      </author>
      <author>
        <name>Bates, Dominic</name>
      </author>
      <author>
        <name>Baumgarten, Falk</name>
      </author>
      <author>
        <name>Bautista, Julian</name>
      </author>
      <author>
        <name>Beaton, Rachael</name>
      </author>
      <author>
        <name>Beers, Timothy C</name>
      </author>
      <author>
        <name>Belfiore, Francesco</name>
      </author>
      <author>
        <name>Bender, Chad F</name>
      </author>
      <author>
        <name>Bernardi, Mariangela</name>
      </author>
      <author>
        <name>Bershady, Matthew A</name>
      </author>
      <author>
        <name>Beutler, Florian</name>
      </author>
      <author>
        <name>Bird, Jonathan C</name>
      </author>
      <author>
        <name>Bizyaev, Dmitry</name>
      </author>
      <author>
        <name>Blanc, Guillermo A</name>
      </author>
      <author>
        <name>Blanton, Michael R</name>
      </author>
      <author>
        <name>Blomqvist, Michael</name>
      </author>
      <author>
        <name>Bolton, Adam S</name>
      </author>
      <author>
        <name>Boquien, Médéric</name>
      </author>
      <author>
        <name>Borissova, Jura</name>
      </author>
      <author>
        <name>Bovy, Jo</name>
      </author>
      <author>
        <name>Diaz, Christian Andres Bradna</name>
      </author>
      <author>
        <name>Brandt, William Nielsen</name>
      </author>
      <author>
        <name>Brinkmann, Jonathan</name>
      </author>
      <author>
        <name>Brownstein, Joel R</name>
      </author>
      <author>
        <name>Bundy, Kevin</name>
      </author>
      <author>
        <name>Burgasser, Adam J</name>
        <uri>https://orcid.org/0000-0002-6523-9536</uri>
      </author>
      <author>
        <name>Burtin, Etienne</name>
      </author>
      <author>
        <name>Busca, Nicolás G</name>
      </author>
      <author>
        <name>Cañas, Caleb I</name>
      </author>
      <author>
        <name>Cano-Díaz, Mariana</name>
      </author>
      <author>
        <name>Cappellari, Michele</name>
      </author>
      <author>
        <name>Carrera, Ricardo</name>
      </author>
      <author>
        <name>Casey, Andrew R</name>
      </author>
      <author>
        <name>Sodi, Bernardo Cervantes</name>
      </author>
      <author>
        <name>Chen, Yanping</name>
      </author>
      <author>
        <name>Cherinka, Brian</name>
      </author>
      <author>
        <name>Chiappini, Cristina</name>
      </author>
      <author>
        <name>Choi, Peter Doohyun</name>
      </author>
      <author>
        <name>Chojnowski, Drew</name>
      </author>
      <author>
        <name>Chuang, Chia-Hsun</name>
      </author>
      <author>
        <name>Chung, Haeun</name>
      </author>
      <author>
        <name>Clerc, Nicolas</name>
      </author>
      <author>
        <name>Cohen, Roger E</name>
      </author>
      <author>
        <name>Comerford, Julia M</name>
      </author>
      <author>
        <name>Comparat, Johan</name>
      </author>
      <author>
        <name>do Nascimento, Janaina Correa</name>
      </author>
      <author>
        <name>da Costa, Luiz</name>
      </author>
      <author>
        <name>Cousinou, Marie-Claude</name>
      </author>
      <author>
        <name>Covey, Kevin</name>
      </author>
      <author>
        <name>Crane, Jeffrey D</name>
      </author>
      <author>
        <name>Cruz-Gonzalez, Irene</name>
      </author>
      <author>
        <name>Cunha, Katia</name>
      </author>
      <author>
        <name>da Silva Ilha, Gabriele</name>
      </author>
      <author>
        <name>Damke, Guillermo J</name>
      </author>
      <author>
        <name>Darling, Jeremy</name>
      </author>
      <author>
        <name>Davidson, James W</name>
      </author>
      <author>
        <name>Dawson, Kyle</name>
      </author>
      <author>
        <name>de Icaza Lizaola, Miguel Angel C</name>
      </author>
      <author>
        <name>de la Macorra, Axel</name>
      </author>
      <author>
        <name>de la Torre, Sylvain</name>
      </author>
      <author>
        <name>De Lee, Nathan</name>
      </author>
      <author>
        <name>de Sainte Agathe, Victoria</name>
      </author>
      <author>
        <name>Machado, Alice Deconto</name>
      </author>
      <author>
        <name>Dell’Agli, Flavia</name>
      </author>
      <author>
        <name>Delubac, Timothée</name>
      </author>
      <author>
        <name>Diamond-Stanic, Aleksandar M</name>
      </author>
      <author>
        <name>Donor, John</name>
      </author>
      <author>
        <name>Downes, Juan José</name>
      </author>
      <author>
        <name>Drory, Niv</name>
      </author>
      <author>
        <name>du Mas des Bourboux, Hélion</name>
      </author>
      <author>
        <name>Duckworth, Christopher J</name>
      </author>
      <author>
        <name>Dwelly, Tom</name>
      </author>
      <author>
        <name>Dyer, Jamie</name>
      </author>
      <author>
        <name>Ebelke, Garrett</name>
      </author>
      <author>
        <name>Eigenbrot, Arthur Davis</name>
      </author>
      <author>
        <name>Eisenstein, Daniel J</name>
      </author>
      <author>
        <name>Elsworth, Yvonne P</name>
      </author>
      <author>
        <name>Emsellem, Eric</name>
      </author>
    </item>
    <item>
      <title>Stability of the Broad-line Region Geometry and Dynamics in Arp 151 Over Seven Years</title>
      <link>https://escholarship.org/uc/item/5n19f64n</link>
      <description>The Seyfert 1 galaxy Arp 151 was monitored as part of three reverberation mapping campaigns spanning 2008-2015. We present modeling of these velocity-resolved reverberation mapping data sets using a geometric and dynamical model for the broad-line region (BLR). By modeling each of the three data sets independently, we infer the evolution of the BLR structure in Arp 151 over a total of 7 yr and constrain the systematic uncertainties in nonvarying parameters such as the black hole mass. We find that the BLR geometry of a thick disk viewed close to face-on is stable over this time, although the size of the BLR grows by a factor of ∼2. The dynamics of the BLR are dominated by inflow, and the inferred black hole mass is consistent for the three data sets, despite the increase in BLR size. Combining the inference for the three data sets yields a black hole mass and statistical uncertainty of log10(/) = with a standard deviation in individual measurements of 0.13 dex.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/5n19f64n</guid>
      <pubDate>Tue, 13 Mar 2018 00:00:00 +0000</pubDate>
      <author>
        <name>Pancoast, A</name>
      </author>
      <author>
        <name>Barth, AJ</name>
        <uri>https://orcid.org/0000-0002-3026-0562</uri>
      </author>
      <author>
        <name>Horne, K</name>
      </author>
      <author>
        <name>Treu, T</name>
        <uri>https://orcid.org/0000-0002-8460-0390</uri>
      </author>
      <author>
        <name>Brewer, BJ</name>
      </author>
      <author>
        <name>Bennert, VN</name>
      </author>
      <author>
        <name>Canalizo, G</name>
      </author>
      <author>
        <name>Gates, EL</name>
      </author>
      <author>
        <name>Li, W</name>
      </author>
      <author>
        <name>Malkan, MA</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
      <author>
        <name>Sand, D</name>
      </author>
      <author>
        <name>Schmidt, T</name>
      </author>
      <author>
        <name>Valenti, S</name>
        <uri>https://orcid.org/0000-0001-8818-0795</uri>
      </author>
      <author>
        <name>Woo, J-H</name>
      </author>
      <author>
        <name>Clubb, KI</name>
      </author>
      <author>
        <name>Cooper, MC</name>
        <uri>https://orcid.org/0000-0003-1371-6019</uri>
      </author>
      <author>
        <name>Crawford, SM</name>
      </author>
      <author>
        <name>Hönig, SF</name>
      </author>
      <author>
        <name>Joner, MD</name>
      </author>
      <author>
        <name>Kandrashoff, MT</name>
      </author>
      <author>
        <name>Lazarova, M</name>
      </author>
      <author>
        <name>Nierenberg, AM</name>
      </author>
      <author>
        <name>Romero-Colmenero, E</name>
      </author>
      <author>
        <name>Son, D</name>
      </author>
      <author>
        <name>Tollerud, E</name>
      </author>
      <author>
        <name>Walsh, JL</name>
      </author>
      <author>
        <name>Winkler, H</name>
      </author>
    </item>
    <item>
      <title>The 13th Data Release of the Sloan Digital Sky Survey: First Spectroscopic Data from the SDSS-IV Survey Mapping Nearby Galaxies at Apache Point Observatory</title>
      <link>https://escholarship.org/uc/item/6dd6x993</link>
      <description>The fourth generation of the Sloan Digital Sky Survey (SDSS-IV) began observations in 2014 July. It pursues three core programs: the Apache Point Observatory Galactic Evolution Experiment 2 (APOGEE-2), Mapping Nearby Galaxies at APO (MaNGA), and the Extended Baryon Oscillation Spectroscopic Survey (eBOSS). As well as its core program, eBOSS contains two major subprograms: the Time Domain Spectroscopic Survey (TDSS) and the SPectroscopic IDentification of ERosita Sources (SPIDERS). This paper describes the first data release from SDSS-IV, Data Release 13 (DR13). DR13 makes publicly available the first 1390 spatially resolved integral field unit observations of nearby galaxies from MaNGA. It includes new observations from eBOSS, completing the Sloan Extended QUasar, Emission-line galaxy, Luminous red galaxy Survey (SEQUELS), which also targeted variability-selected objects and X-ray-selected objects. DR13 includes new reductions of the SDSS-III BOSS data, improving the spectrophotometric...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/6dd6x993</guid>
      <pubDate>Tue, 6 Feb 2018 00:00:00 +0000</pubDate>
      <author>
        <name>Albareti, Franco D</name>
      </author>
      <author>
        <name>Prieto, Carlos Allende</name>
      </author>
      <author>
        <name>Almeida, Andres</name>
      </author>
      <author>
        <name>Anders, Friedrich</name>
      </author>
      <author>
        <name>Anderson, Scott</name>
      </author>
      <author>
        <name>Andrews, Brett H</name>
      </author>
      <author>
        <name>Aragón-Salamanca, Alfonso</name>
      </author>
      <author>
        <name>Argudo-Fernández, Maria</name>
      </author>
      <author>
        <name>Armengaud, Eric</name>
      </author>
      <author>
        <name>Aubourg, Eric</name>
      </author>
      <author>
        <name>Avila-Reese, Vladimir</name>
      </author>
      <author>
        <name>Badenes, Carles</name>
      </author>
      <author>
        <name>Bailey, Stephen</name>
        <uri>https://orcid.org/0000-0003-4162-6619</uri>
      </author>
      <author>
        <name>Barbuy, Beatriz</name>
      </author>
      <author>
        <name>Barger, Kat</name>
      </author>
      <author>
        <name>Barrera-Ballesteros, Jorge</name>
      </author>
      <author>
        <name>Bartosz, Curtis</name>
      </author>
      <author>
        <name>Basu, Sarbani</name>
      </author>
      <author>
        <name>Bates, Dominic</name>
      </author>
      <author>
        <name>Battaglia, Giuseppina</name>
      </author>
      <author>
        <name>Baumgarten, Falk</name>
      </author>
      <author>
        <name>Baur, Julien</name>
      </author>
      <author>
        <name>Bautista, Julian</name>
      </author>
      <author>
        <name>Beers, Timothy C</name>
      </author>
      <author>
        <name>Belfiore, Francesco</name>
      </author>
      <author>
        <name>Bershady, Matthew</name>
      </author>
      <author>
        <name>de Lis, Sara Bertran</name>
      </author>
      <author>
        <name>Bird, Jonathan C</name>
      </author>
      <author>
        <name>Bizyaev, Dmitry</name>
      </author>
      <author>
        <name>Blanc, Guillermo A</name>
      </author>
      <author>
        <name>Blanton, Michael</name>
      </author>
      <author>
        <name>Blomqvist, Michael</name>
      </author>
      <author>
        <name>Bolton, Adam S</name>
      </author>
      <author>
        <name>Borissova, J</name>
      </author>
      <author>
        <name>Bovy, Jo</name>
      </author>
      <author>
        <name>Brandt, William Nielsen</name>
      </author>
      <author>
        <name>Brinkmann, Jonathan</name>
      </author>
      <author>
        <name>Brownstein, Joel R</name>
      </author>
      <author>
        <name>Bundy, Kevin</name>
      </author>
      <author>
        <name>Burtin, Etienne</name>
      </author>
      <author>
        <name>Busca, Nicolás G</name>
      </author>
      <author>
        <name>Chavez, Hugo Orlando Camacho</name>
      </author>
      <author>
        <name>Díaz, M Cano</name>
      </author>
      <author>
        <name>Cappellari, Michele</name>
      </author>
      <author>
        <name>Carrera, Ricardo</name>
      </author>
      <author>
        <name>Chen, Yanping</name>
      </author>
      <author>
        <name>Cherinka, Brian</name>
      </author>
      <author>
        <name>Cheung, Edmond</name>
      </author>
      <author>
        <name>Chiappini, Cristina</name>
      </author>
      <author>
        <name>Chojnowski, Drew</name>
      </author>
      <author>
        <name>Chuang, Chia-Hsun</name>
      </author>
      <author>
        <name>Chung, Haeun</name>
      </author>
      <author>
        <name>Cirolini, Rafael Fernando</name>
      </author>
      <author>
        <name>Clerc, Nicolas</name>
      </author>
      <author>
        <name>Cohen, Roger E</name>
      </author>
      <author>
        <name>Comerford, Julia M</name>
      </author>
      <author>
        <name>Comparat, Johan</name>
      </author>
      <author>
        <name>do Nascimento, Janaina Correa</name>
      </author>
      <author>
        <name>Cousinou, Marie-Claude</name>
      </author>
      <author>
        <name>Covey, Kevin</name>
      </author>
      <author>
        <name>Crane, Jeffrey D</name>
      </author>
      <author>
        <name>Croft, Rupert</name>
      </author>
      <author>
        <name>Cunha, Katia</name>
      </author>
      <author>
        <name>Darling, Jeremy</name>
      </author>
      <author>
        <name>Davidson, James W</name>
      </author>
      <author>
        <name>Dawson, Kyle</name>
      </author>
      <author>
        <name>Da Costa, Luiz</name>
      </author>
      <author>
        <name>Da Silva Ilha, Gabriele</name>
      </author>
      <author>
        <name>Machado, Alice Deconto</name>
      </author>
      <author>
        <name>Delubac, Timothée</name>
      </author>
      <author>
        <name>De Lee, Nathan</name>
      </author>
      <author>
        <name>De la Macorra, Axel</name>
      </author>
      <author>
        <name>De la Torre, Sylvain</name>
      </author>
      <author>
        <name>Diamond-Stanic, Aleksandar M</name>
      </author>
      <author>
        <name>Donor, John</name>
      </author>
      <author>
        <name>Downes, Juan Jose</name>
      </author>
      <author>
        <name>Drory, Niv</name>
      </author>
      <author>
        <name>Du, Cheng</name>
      </author>
      <author>
        <name>Du Mas des Bourboux, Hélion</name>
      </author>
      <author>
        <name>Dwelly, Tom</name>
      </author>
      <author>
        <name>Ebelke, Garrett</name>
      </author>
      <author>
        <name>Eigenbrot, Arthur</name>
      </author>
      <author>
        <name>Eisenstein, Daniel J</name>
      </author>
      <author>
        <name>Elsworth, Yvonne P</name>
      </author>
      <author>
        <name>Emsellem, Eric</name>
      </author>
      <author>
        <name>Eracleous, Michael</name>
      </author>
      <author>
        <name>Escoffier, Stephanie</name>
      </author>
      <author>
        <name>Evans, Michael L</name>
      </author>
      <author>
        <name>Falcón-Barroso, Jesús</name>
      </author>
      <author>
        <name>Fan, Xiaohui</name>
      </author>
      <author>
        <name>Favole, Ginevra</name>
      </author>
      <author>
        <name>Fernandez-Alvar, Emma</name>
      </author>
      <author>
        <name>Fernandez-Trincado, JG</name>
      </author>
      <author>
        <name>Feuillet, Diane</name>
      </author>
      <author>
        <name>Fleming, Scott W</name>
      </author>
      <author>
        <name>Font-Ribera, Andreu</name>
      </author>
      <author>
        <name>Freischlad, Gordon</name>
      </author>
      <author>
        <name>Frinchaboy, Peter</name>
      </author>
      <author>
        <name>Fu, Hai</name>
      </author>
      <author>
        <name>Gao, Yang</name>
      </author>
    </item>
    <item>
      <title>Sloan Digital Sky Survey IV: Mapping the Milky Way, Nearby Galaxies, and the Distant Universe</title>
      <link>https://escholarship.org/uc/item/0v44n629</link>
      <description>We describe the Sloan Digital Sky Survey IV (SDSS-IV), a project encompassing three major spectroscopic programs. The Apache Point Observatory Galactic Evolution Experiment 2 (APOGEE-2) is observing hundreds of thousands of Milky Way stars at high resolution and high signal-to-noise ratios in the near-infrared. The Mapping Nearby Galaxies at Apache Point Observatory (MaNGA) survey is obtaining spatially resolved spectroscopy for thousands of nearby galaxies (median ). The extended Baryon Oscillation Spectroscopic Survey (eBOSS) is mapping the galaxy, quasar, and neutral gas distributions between and 3.5 to constrain cosmology using baryon acoustic oscillations, redshift space distortions, and the shape of the power spectrum. Within eBOSS, we are conducting two major subprograms: the SPectroscopic IDentification of eROSITA Sources (SPIDERS), investigating X-ray AGNs and galaxies in X-ray clusters, and the Time Domain Spectroscopic Survey (TDSS), obtaining spectra of variable sources....</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/0v44n629</guid>
      <pubDate>Tue, 1 Aug 2017 00:00:00 +0000</pubDate>
      <author>
        <name>Blanton, Michael R</name>
      </author>
      <author>
        <name>Bershady, Matthew A</name>
      </author>
      <author>
        <name>Abolfathi, Bela</name>
      </author>
      <author>
        <name>Albareti, Franco D</name>
      </author>
      <author>
        <name>Prieto, Carlos Allende</name>
      </author>
      <author>
        <name>Almeida, Andres</name>
      </author>
      <author>
        <name>Alonso-García, Javier</name>
      </author>
      <author>
        <name>Anders, Friedrich</name>
      </author>
      <author>
        <name>Anderson, Scott F</name>
      </author>
      <author>
        <name>Andrews, Brett</name>
      </author>
      <author>
        <name>Aquino-Ortíz, Erik</name>
      </author>
      <author>
        <name>Aragón-Salamanca, Alfonso</name>
      </author>
      <author>
        <name>Argudo-Fernández, Maria</name>
      </author>
      <author>
        <name>Armengaud, Eric</name>
      </author>
      <author>
        <name>Aubourg, Eric</name>
      </author>
      <author>
        <name>Avila-Reese, Vladimir</name>
      </author>
      <author>
        <name>Badenes, Carles</name>
      </author>
      <author>
        <name>Bailey, Stephen</name>
        <uri>https://orcid.org/0000-0003-4162-6619</uri>
      </author>
      <author>
        <name>Barger, Kathleen A</name>
      </author>
      <author>
        <name>Barrera-Ballesteros, Jorge</name>
      </author>
      <author>
        <name>Bartosz, Curtis</name>
      </author>
      <author>
        <name>Bates, Dominic</name>
      </author>
      <author>
        <name>Baumgarten, Falk</name>
      </author>
      <author>
        <name>Bautista, Julian</name>
      </author>
      <author>
        <name>Beaton, Rachael</name>
      </author>
      <author>
        <name>Beers, Timothy C</name>
      </author>
      <author>
        <name>Belfiore, Francesco</name>
      </author>
      <author>
        <name>Bender, Chad F</name>
      </author>
      <author>
        <name>Berlind, Andreas A</name>
      </author>
      <author>
        <name>Bernardi, Mariangela</name>
      </author>
      <author>
        <name>Beutler, Florian</name>
      </author>
      <author>
        <name>Bird, Jonathan C</name>
      </author>
      <author>
        <name>Bizyaev, Dmitry</name>
      </author>
      <author>
        <name>Blanc, Guillermo A</name>
      </author>
      <author>
        <name>Blomqvist, Michael</name>
      </author>
      <author>
        <name>Bolton, Adam S</name>
      </author>
      <author>
        <name>Boquien, Médéric</name>
      </author>
      <author>
        <name>Borissova, Jura</name>
      </author>
      <author>
        <name>van den Bosch, Remco</name>
      </author>
      <author>
        <name>Bovy, Jo</name>
      </author>
      <author>
        <name>Brandt, William N</name>
      </author>
      <author>
        <name>Brinkmann, Jonathan</name>
      </author>
      <author>
        <name>Brownstein, Joel R</name>
      </author>
      <author>
        <name>Bundy, Kevin</name>
      </author>
      <author>
        <name>Burgasser, Adam J</name>
        <uri>https://orcid.org/0000-0002-6523-9536</uri>
      </author>
      <author>
        <name>Burtin, Etienne</name>
      </author>
      <author>
        <name>Busca, Nicolás G</name>
      </author>
      <author>
        <name>Cappellari, Michele</name>
      </author>
      <author>
        <name>Carigi, Maria Leticia Delgado</name>
      </author>
      <author>
        <name>Carlberg, Joleen K</name>
      </author>
      <author>
        <name>Rosell, Aurelio Carnero</name>
      </author>
      <author>
        <name>Carrera, Ricardo</name>
      </author>
      <author>
        <name>Chanover, Nancy J</name>
      </author>
      <author>
        <name>Cherinka, Brian</name>
      </author>
      <author>
        <name>Cheung, Edmond</name>
      </author>
      <author>
        <name>Chew, Yilen Gómez Maqueo</name>
      </author>
      <author>
        <name>Chiappini, Cristina</name>
      </author>
      <author>
        <name>Choi, Peter Doohyun</name>
      </author>
      <author>
        <name>Chojnowski, Drew</name>
      </author>
      <author>
        <name>Chuang, Chia-Hsun</name>
      </author>
      <author>
        <name>Chung, Haeun</name>
      </author>
      <author>
        <name>Cirolini, Rafael Fernando</name>
      </author>
      <author>
        <name>Clerc, Nicolas</name>
      </author>
      <author>
        <name>Cohen, Roger E</name>
      </author>
      <author>
        <name>Comparat, Johan</name>
      </author>
      <author>
        <name>da Costa, Luiz</name>
      </author>
      <author>
        <name>Cousinou, Marie-Claude</name>
      </author>
      <author>
        <name>Covey, Kevin</name>
      </author>
      <author>
        <name>Crane, Jeffrey D</name>
      </author>
      <author>
        <name>Croft, Rupert AC</name>
      </author>
      <author>
        <name>Cruz-Gonzalez, Irene</name>
      </author>
      <author>
        <name>Cuadra, Daniel Garrido</name>
      </author>
      <author>
        <name>Cunha, Katia</name>
      </author>
      <author>
        <name>Damke, Guillermo J</name>
      </author>
      <author>
        <name>Darling, Jeremy</name>
      </author>
      <author>
        <name>Davies, Roger</name>
      </author>
      <author>
        <name>Dawson, Kyle</name>
      </author>
      <author>
        <name>de la Macorra, Axel</name>
      </author>
      <author>
        <name>Dell’Agli, Flavia</name>
      </author>
      <author>
        <name>De Lee, Nathan</name>
      </author>
      <author>
        <name>Delubac, Timothée</name>
      </author>
      <author>
        <name>Di Mille, Francesco</name>
      </author>
      <author>
        <name>Diamond-Stanic, Aleks</name>
      </author>
      <author>
        <name>Cano-Díaz, Mariana</name>
      </author>
      <author>
        <name>Donor, John</name>
      </author>
      <author>
        <name>Downes, Juan José</name>
      </author>
      <author>
        <name>Drory, Niv</name>
      </author>
      <author>
        <name>du Mas des Bourboux, Hélion</name>
      </author>
      <author>
        <name>Duckworth, Christopher J</name>
      </author>
      <author>
        <name>Dwelly, Tom</name>
      </author>
      <author>
        <name>Dyer, Jamie</name>
      </author>
      <author>
        <name>Ebelke, Garrett</name>
      </author>
      <author>
        <name>Eigenbrot, Arthur D</name>
      </author>
      <author>
        <name>Eisenstein, Daniel J</name>
      </author>
      <author>
        <name>Emsellem, Eric</name>
      </author>
      <author>
        <name>Eracleous, Mike</name>
      </author>
      <author>
        <name>Escoffier, Stephanie</name>
      </author>
      <author>
        <name>Evans, Michael L</name>
      </author>
      <author>
        <name>Fan, Xiaohui</name>
      </author>
      <author>
        <name>Fernández-Alvar, Emma</name>
      </author>
    </item>
    <item>
      <title>Structural and Star-forming Relations since z similar to 3: Connecting Compact Star-forming and Quiescent Galaxies</title>
      <link>https://escholarship.org/uc/item/90d3n6hc</link>
      <description>Structural and Star-forming Relations since z similar to 3: Connecting Compact Star-forming and Quiescent Galaxies</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/90d3n6hc</guid>
      <pubDate>Tue, 11 Jul 2017 00:00:00 +0000</pubDate>
      <author>
        <name>Barro, Guillermo</name>
      </author>
      <author>
        <name>Faber, SM</name>
      </author>
      <author>
        <name>Koo, David C</name>
        <uri>https://orcid.org/0000-0003-3385-6799</uri>
      </author>
      <author>
        <name>Dekel, Avishai</name>
      </author>
      <author>
        <name>Fang, Jerome J</name>
      </author>
      <author>
        <name>Trump, Jonathan R</name>
      </author>
      <author>
        <name>Perez-Gonzalez, Pablo G</name>
      </author>
      <author>
        <name>Pacifici, Camilla</name>
      </author>
      <author>
        <name>Primack, Joel R</name>
        <uri>https://orcid.org/0000-0001-5091-5098</uri>
      </author>
      <author>
        <name>Somerville, Rachel S</name>
      </author>
      <author>
        <name>Yan, Haojing</name>
      </author>
      <author>
        <name>Guo, Yicheng</name>
      </author>
      <author>
        <name>Liu, Fengshan</name>
      </author>
      <author>
        <name>Ceverino, Daniel</name>
      </author>
      <author>
        <name>Kocevski, Dale D</name>
      </author>
      <author>
        <name>McGrath, Elizabeth</name>
      </author>
    </item>
    <item>
      <title>STELLAR MASS–GAS-PHASE METALLICITY RELATION AT 0.5 ≤ z ≤ 0.7: A POWER LAW WITH INCREASING SCATTER TOWARD THE LOW-MASS REGIME</title>
      <link>https://escholarship.org/uc/item/2jg8m6t2</link>
      <description>We present the stellar mass (M∗)gas-phase metallicity relation (MZR) and its scatter at intermediate redshifts (0.5 ≤ z ≤ 0.7) for 1381 field galaxies collected from deep spectroscopic surveys. The star formation rate (SFR) and color at a given M∗ of this magnitude-limited (R ≳ 24 AB) sample are representative of normal starforming galaxies. For masses below 109 Mo, our sample of 237 galaxies is ∼10 times larger than those in previous studies beyond the local universe. This huge gain in sample size enables superior constraints on the MZR and its scatter in the low-mass regime. We find a power-law MZR at 108 Mo &amp;lt; M∗ &amp;lt; 1011 Mo: 12 + log (O/H) = (5.83 ± 0.19) +(0.30 ± 0.02) log (M∗/Mo). At 109 Mo &amp;lt; M∗ &amp;lt; 1010.5 Mo, our MZR shows agreement with others measured at similar redshifts in the literature. Our power-law slope is, however, shallower than the extrapolation of the MZRs of others to masses below 109 Mo. The SFR dependence of the MZR in our sample is weaker than that...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/2jg8m6t2</guid>
      <pubDate>Thu, 6 Jul 2017 00:00:00 +0000</pubDate>
      <author>
        <name>Guo, Yicheng</name>
      </author>
      <author>
        <name>Koo, David C</name>
        <uri>https://orcid.org/0000-0003-3385-6799</uri>
      </author>
      <author>
        <name>Lu, Yu</name>
      </author>
      <author>
        <name>Forbes, John C</name>
      </author>
      <author>
        <name>Rafelski, Marc</name>
      </author>
      <author>
        <name>Trump, Jonathan R</name>
      </author>
      <author>
        <name>Amorín, Ricardo</name>
      </author>
      <author>
        <name>Barro, Guillermo</name>
      </author>
      <author>
        <name>Davé, Romeel</name>
      </author>
      <author>
        <name>Faber, SM</name>
      </author>
      <author>
        <name>Hathi, Nimish P</name>
      </author>
      <author>
        <name>Yesuf, Hassen</name>
      </author>
      <author>
        <name>Cooper, Michael C</name>
        <uri>https://orcid.org/0000-0003-1371-6019</uri>
      </author>
      <author>
        <name>Dekel, Avishai</name>
      </author>
      <author>
        <name>Guhathakurta, Puragra</name>
      </author>
      <author>
        <name>Kirby, Evan N</name>
      </author>
      <author>
        <name>Koekemoer, Anton M</name>
      </author>
      <author>
        <name>Pérez-González, Pablo G</name>
      </author>
      <author>
        <name>Lin, Lihwai</name>
      </author>
      <author>
        <name>Newman, Jeffery A</name>
      </author>
      <author>
        <name>Primack, Joel R</name>
        <uri>https://orcid.org/0000-0001-5091-5098</uri>
      </author>
      <author>
        <name>Rosario, David J</name>
      </author>
      <author>
        <name>Willmer, Christopher NA</name>
      </author>
      <author>
        <name>Yan, Renbin</name>
      </author>
    </item>
    <item>
      <title>BROAD-LINE REVERBERATION IN THE KEPLER-FIELD SEYFERT GALAXY Zw 229-015</title>
      <link>https://escholarship.org/uc/item/899861jd</link>
      <description>The Seyfert 1 galaxy Zw 229-015 is among the brightest active galaxies being monitored by the Kepler mission. In order to determine the black hole mass in Zw 229-015 from Hβ reverberation mapping, we have carried out nightly observations with the Kast Spectrograph at the Lick 3 m telescope during the dark runs from 2010 June through December, obtaining 54 spectroscopic observations in total. We have also obtained nightly V-band imaging with the Katzman Automatic Imaging Telescope at Lick Observatory and with the 0.9 m telescope at the Brigham Young University West Mountain Observatory over the same period. We detect strong variability in the source, which exhibited more than a factor of two change in broad Hβ flux. From cross-correlation measurements, we find that the Hβ light curve has a rest-frame lag of 3.86+0.69−0.90 days with respect to the V-band continuum variations. We also measure reverberation lags for Hα and Hγ and find an upper limit to the Hδ lag. Combining the Hβ...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/899861jd</guid>
      <pubDate>Tue, 20 Jun 2017 00:00:00 +0000</pubDate>
      <author>
        <name>Barth, Aaron J</name>
        <uri>https://orcid.org/0000-0002-3026-0562</uri>
      </author>
      <author>
        <name>Nguyen, My L</name>
      </author>
      <author>
        <name>Malkan, Matthew A</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
      <author>
        <name>Filippenko, Alexei V</name>
        <uri>https://orcid.org/0000-0003-3460-0103</uri>
      </author>
      <author>
        <name>Li, Weidong</name>
      </author>
      <author>
        <name>Gorjian, Varoujan</name>
      </author>
      <author>
        <name>Joner, Michael D</name>
      </author>
      <author>
        <name>Bennert, Vardha Nicola</name>
      </author>
      <author>
        <name>Botyanszki, Janos</name>
      </author>
      <author>
        <name>Cenko, S Bradley</name>
      </author>
      <author>
        <name>Childress, Michael</name>
      </author>
      <author>
        <name>Choi, Jieun</name>
      </author>
      <author>
        <name>Comerford, Julia M</name>
      </author>
      <author>
        <name>Cucciara, Antonino</name>
      </author>
      <author>
        <name>da Silva, Robert</name>
      </author>
      <author>
        <name>Duchêne, Gaspard</name>
      </author>
      <author>
        <name>Fumagalli, Michele</name>
      </author>
      <author>
        <name>Ganeshalingam, Mohan</name>
      </author>
      <author>
        <name>Gates, Elinor L</name>
        <uri>https://orcid.org/0000-0002-3739-0423</uri>
      </author>
      <author>
        <name>Gerke, Brian F</name>
      </author>
      <author>
        <name>Griffith, Christopher V</name>
      </author>
      <author>
        <name>Harris, Chelsea</name>
      </author>
      <author>
        <name>Hintz, Eric G</name>
      </author>
      <author>
        <name>Hsiao, Eric</name>
      </author>
      <author>
        <name>Kandrashoff, Michael T</name>
      </author>
      <author>
        <name>Keel, William C</name>
      </author>
      <author>
        <name>Kirkman, David</name>
      </author>
      <author>
        <name>Kleiser, Io KW</name>
      </author>
      <author>
        <name>Laney, C David</name>
      </author>
      <author>
        <name>Lee, Jeffrey</name>
      </author>
      <author>
        <name>Lopez, Liliana</name>
      </author>
      <author>
        <name>Lowe, Thomas B</name>
      </author>
      <author>
        <name>Moody, J Ward</name>
      </author>
      <author>
        <name>Morton, Alekzandir</name>
      </author>
      <author>
        <name>Nierenberg, AM</name>
      </author>
      <author>
        <name>Nugent, Peter</name>
        <uri>https://orcid.org/0000-0002-3389-0586</uri>
      </author>
      <author>
        <name>Pancoast, Anna</name>
      </author>
      <author>
        <name>Rex, Jacob</name>
      </author>
      <author>
        <name>Rich, R Michael</name>
      </author>
      <author>
        <name>Silverman, Jeffrey M</name>
      </author>
      <author>
        <name>Smith, Graeme H</name>
      </author>
      <author>
        <name>Sonnenfeld, Alessandro</name>
      </author>
      <author>
        <name>Suzuki, Nao</name>
      </author>
      <author>
        <name>Tytler, David</name>
      </author>
      <author>
        <name>Walsh, Jonelle L</name>
      </author>
      <author>
        <name>Woo, Jong-Hak</name>
      </author>
      <author>
        <name>Yang, Yizhe</name>
      </author>
      <author>
        <name>Zeisse, Carl</name>
      </author>
    </item>
    <item>
      <title>Space Telescope and Optical Reverberation Mapping Project. VII. Understanding the Ultraviolet Anomaly in NGC 5548 with X-Ray Spectroscopy</title>
      <link>https://escholarship.org/uc/item/9g73718t</link>
      <description>During the Space Telescope and Optical Reverberation Mapping Project observations of NGC 5548, the continuum and emission-line variability became decorrelated during the second half of the six-month-long observing campaign. Here we present Swift and Chandra X-ray spectra of NGC 5548 obtained as part of the campaign. The Swift spectra show that excess flux (relative to a power-law continuum) in the soft X-ray band appears before the start of the anomalous emission-line behavior, peaks during the period of the anomaly, and then declines. This is a model-independent result suggesting that the soft excess is related to the anomaly. We divide the Swift data into on- and off-anomaly spectra to characterize the soft excess via spectral fitting. The cause of the spectral differences is likely due to a change in the intrinsic spectrum rather than to variable obscuration or partial covering. The Chandra spectra have lower signal-to-noise ratios, but are consistent with the Swift data. Our...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/9g73718t</guid>
      <pubDate>Tue, 9 May 2017 00:00:00 +0000</pubDate>
      <author>
        <name>Mathur, S</name>
      </author>
      <author>
        <name>Gupta, A</name>
      </author>
      <author>
        <name>Page, K</name>
      </author>
      <author>
        <name>Pogge, RW</name>
      </author>
      <author>
        <name>Krongold, Y</name>
      </author>
      <author>
        <name>Goad, MR</name>
      </author>
      <author>
        <name>Adams, SM</name>
      </author>
      <author>
        <name>Anderson, MD</name>
      </author>
      <author>
        <name>Arévalo, P</name>
      </author>
      <author>
        <name>Barth, AJ</name>
        <uri>https://orcid.org/0000-0002-3026-0562</uri>
      </author>
      <author>
        <name>Bazhaw, C</name>
      </author>
      <author>
        <name>Beatty, TG</name>
      </author>
      <author>
        <name>Bentz, MC</name>
      </author>
      <author>
        <name>Bigley, A</name>
      </author>
      <author>
        <name>Bisogni, S</name>
      </author>
      <author>
        <name>Borman, GA</name>
      </author>
      <author>
        <name>Boroson, TA</name>
      </author>
      <author>
        <name>Bottorff, MC</name>
      </author>
      <author>
        <name>Brandt, WN</name>
      </author>
      <author>
        <name>Breeveld, AA</name>
      </author>
      <author>
        <name>Brown, JE</name>
      </author>
      <author>
        <name>Brown, JS</name>
      </author>
      <author>
        <name>Cackett, EM</name>
      </author>
      <author>
        <name>Canalizo, G</name>
      </author>
      <author>
        <name>Carini, MT</name>
      </author>
      <author>
        <name>Clubb, KI</name>
      </author>
      <author>
        <name>Comerford, JM</name>
      </author>
      <author>
        <name>Coker, CT</name>
      </author>
      <author>
        <name>Corsini, EM</name>
      </author>
      <author>
        <name>Crenshaw, DM</name>
      </author>
      <author>
        <name>Croft, S</name>
      </author>
      <author>
        <name>Croxall, KV</name>
      </author>
      <author>
        <name>Bontà, E Dalla</name>
      </author>
      <author>
        <name>Deason, AJ</name>
      </author>
      <author>
        <name>Denney, KD</name>
      </author>
      <author>
        <name>De Lorenzo-Cáceres, A</name>
      </author>
      <author>
        <name>De Rosa, G</name>
      </author>
      <author>
        <name>Dietrich, M</name>
      </author>
      <author>
        <name>Edelson, R</name>
      </author>
      <author>
        <name>Ely, J</name>
      </author>
      <author>
        <name>Eracleous, M</name>
      </author>
      <author>
        <name>Evans, PA</name>
      </author>
      <author>
        <name>Fausnaugh, MM</name>
      </author>
      <author>
        <name>Ferland, GJ</name>
      </author>
      <author>
        <name>Filippenko, AV</name>
        <uri>https://orcid.org/0000-0003-3460-0103</uri>
      </author>
      <author>
        <name>Flatland, K</name>
      </author>
      <author>
        <name>Fox, OD</name>
      </author>
      <author>
        <name>Gates, EL</name>
      </author>
      <author>
        <name>Gehrels, N</name>
      </author>
      <author>
        <name>Geier, S</name>
      </author>
      <author>
        <name>Gelbord, JM</name>
      </author>
      <author>
        <name>Gorjian, V</name>
      </author>
      <author>
        <name>Greene, JE</name>
      </author>
      <author>
        <name>Grier, CJ</name>
      </author>
      <author>
        <name>Grupe, D</name>
      </author>
      <author>
        <name>Hall, PB</name>
      </author>
      <author>
        <name>Henderson, CB</name>
      </author>
      <author>
        <name>Hicks, S</name>
      </author>
      <author>
        <name>Holmbeck, E</name>
      </author>
      <author>
        <name>Holoien, TW-S</name>
      </author>
      <author>
        <name>Horenstein, D</name>
      </author>
      <author>
        <name>Horne, Keith</name>
      </author>
      <author>
        <name>Hutchison, T</name>
      </author>
      <author>
        <name>Im, M</name>
      </author>
      <author>
        <name>Jensen, JJ</name>
      </author>
      <author>
        <name>Johnson, CA</name>
      </author>
      <author>
        <name>Joner, MD</name>
      </author>
      <author>
        <name>Jones, J</name>
      </author>
      <author>
        <name>Kaastra, J</name>
      </author>
      <author>
        <name>Kaspi, S</name>
      </author>
      <author>
        <name>Kelly, BC</name>
      </author>
      <author>
        <name>Kelly, PL</name>
      </author>
      <author>
        <name>Kennea, JA</name>
      </author>
      <author>
        <name>Kim, M</name>
      </author>
      <author>
        <name>Kim, S</name>
      </author>
      <author>
        <name>Kim, SC</name>
      </author>
      <author>
        <name>King, A</name>
      </author>
      <author>
        <name>Klimanov, SA</name>
      </author>
      <author>
        <name>Kochanek, CS</name>
      </author>
      <author>
        <name>Korista, KT</name>
      </author>
      <author>
        <name>Kriss, GA</name>
      </author>
      <author>
        <name>Lau, MW</name>
      </author>
      <author>
        <name>Lee, JC</name>
      </author>
      <author>
        <name>Leonard, DC</name>
      </author>
      <author>
        <name>Li, M</name>
      </author>
      <author>
        <name>Lira, P</name>
      </author>
      <author>
        <name>Ma, Z</name>
      </author>
      <author>
        <name>MacInnis, F</name>
      </author>
      <author>
        <name>Manne-Nicholas, ER</name>
      </author>
      <author>
        <name>Malkan, MA</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
      <author>
        <name>Mauerhan, JC</name>
      </author>
      <author>
        <name>McGurk, R</name>
      </author>
      <author>
        <name>McHardy, IM</name>
      </author>
      <author>
        <name>Montouri, C</name>
      </author>
      <author>
        <name>Morelli, L</name>
      </author>
      <author>
        <name>Mosquera, A</name>
      </author>
      <author>
        <name>Mudd, D</name>
      </author>
      <author>
        <name>Muller-Sanchez, F</name>
      </author>
      <author>
        <name>Musso, R</name>
      </author>
      <author>
        <name>Nazarov, SV</name>
      </author>
    </item>
    <item>
      <title>Space Telescope and Optical Reverberation Mapping Project. V. Optical Spectroscopic Campaign and Emission-line Analysis for NGC 5548</title>
      <link>https://escholarship.org/uc/item/0d12843b</link>
      <description>We present the results of an optical spectroscopic monitoring program targeting NGC 5548 as part of a larger multiwavelength reverberation mapping campaign. The campaign spanned 6 months and achieved an almost daily cadence with observations from five ground-based telescopes. The Hβ and He ii λ4686 broad emission-line light curves lag that of the 5100 +-optical continuum by 4.17+0.36-0.36 and 0.79+0.35-0.34 days, respectively. The Hβ lag relative to the 1158 ultraviolet continuum light curve measured by the Hubble Space Telescope is ∼50% longer than that measured against the optical continuum, and the lag difference is consistent with the observed lag between the optical and ultraviolet continua. This suggests that the characteristic radius of the broad-line region is ∼50% larger than the value inferred from optical data alone. We also measured velocity-resolved emission-line lags for Hβ and found a complex velocity-lag structure with shorter lags in the line wings, indicative...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/0d12843b</guid>
      <pubDate>Tue, 11 Apr 2017 00:00:00 +0000</pubDate>
      <author>
        <name>Pei, L</name>
      </author>
      <author>
        <name>Fausnaugh, MM</name>
      </author>
      <author>
        <name>Barth, AJ</name>
        <uri>https://orcid.org/0000-0002-3026-0562</uri>
      </author>
      <author>
        <name>Peterson, BM</name>
      </author>
      <author>
        <name>Bentz, MC</name>
      </author>
      <author>
        <name>De Rosa, G</name>
      </author>
      <author>
        <name>Denney, KD</name>
      </author>
      <author>
        <name>Goad, MR</name>
      </author>
      <author>
        <name>Kochanek, CS</name>
      </author>
      <author>
        <name>Korista, KT</name>
      </author>
      <author>
        <name>Kriss, GA</name>
      </author>
      <author>
        <name>Pogge, RW</name>
      </author>
      <author>
        <name>Bennert, VN</name>
      </author>
      <author>
        <name>Brotherton, M</name>
      </author>
      <author>
        <name>Clubb, KI</name>
      </author>
      <author>
        <name>Bontà, E Dalla</name>
      </author>
      <author>
        <name>Filippenko, AV</name>
        <uri>https://orcid.org/0000-0003-3460-0103</uri>
      </author>
      <author>
        <name>Greene, JE</name>
      </author>
      <author>
        <name>Grier, CJ</name>
      </author>
      <author>
        <name>Vestergaard, M</name>
      </author>
      <author>
        <name>Zheng, W</name>
      </author>
      <author>
        <name>Adams, Scott M</name>
      </author>
      <author>
        <name>Beatty, Thomas G</name>
      </author>
      <author>
        <name>Bigley, A</name>
      </author>
      <author>
        <name>Brown, Jacob E</name>
      </author>
      <author>
        <name>Brown, Jonathan S</name>
      </author>
      <author>
        <name>Canalizo, G</name>
      </author>
      <author>
        <name>Comerford, JM</name>
      </author>
      <author>
        <name>Coker, Carl T</name>
      </author>
      <author>
        <name>Corsini, EM</name>
      </author>
      <author>
        <name>Croft, S</name>
      </author>
      <author>
        <name>Croxall, KV</name>
      </author>
      <author>
        <name>Deason, AJ</name>
      </author>
      <author>
        <name>Eracleous, Michael</name>
      </author>
      <author>
        <name>Fox, OD</name>
      </author>
      <author>
        <name>Gates, EL</name>
      </author>
      <author>
        <name>Henderson, CB</name>
      </author>
      <author>
        <name>Holmbeck, E</name>
      </author>
      <author>
        <name>Holoien, TW-S</name>
      </author>
      <author>
        <name>Jensen, JJ</name>
      </author>
      <author>
        <name>Johnson, CA</name>
      </author>
      <author>
        <name>Kelly, PL</name>
      </author>
      <author>
        <name>Kim, S</name>
      </author>
      <author>
        <name>King, A</name>
      </author>
      <author>
        <name>Lau, MW</name>
      </author>
      <author>
        <name>Li, Miao</name>
      </author>
      <author>
        <name>Lochhaas, Cassandra</name>
      </author>
      <author>
        <name>Ma, Zhiyuan</name>
      </author>
      <author>
        <name>Manne-Nicholas, ER</name>
      </author>
      <author>
        <name>Mauerhan, JC</name>
      </author>
      <author>
        <name>Malkan, MA</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
      <author>
        <name>McGurk, R</name>
      </author>
      <author>
        <name>Morelli, L</name>
      </author>
      <author>
        <name>Mosquera, Ana</name>
      </author>
      <author>
        <name>Mudd, Dale</name>
      </author>
      <author>
        <name>Sanchez, F Muller</name>
      </author>
      <author>
        <name>Nguyen, ML</name>
      </author>
      <author>
        <name>Ochner, P</name>
      </author>
      <author>
        <name>Ou-Yang, B</name>
      </author>
      <author>
        <name>Pancoast, A</name>
      </author>
      <author>
        <name>Penny, Matthew T</name>
      </author>
      <author>
        <name>Pizzella, A</name>
      </author>
      <author>
        <name>Poleski, Radosław</name>
      </author>
      <author>
        <name>Runnoe, Jessie</name>
      </author>
      <author>
        <name>Scott, B</name>
      </author>
      <author>
        <name>Schimoia, Jaderson S</name>
      </author>
      <author>
        <name>Shappee, BJ</name>
      </author>
      <author>
        <name>Shivvers, I</name>
      </author>
      <author>
        <name>Simonian, Gregory V</name>
      </author>
      <author>
        <name>Siviero, A</name>
      </author>
      <author>
        <name>Somers, Garrett</name>
      </author>
      <author>
        <name>Stevens, Daniel J</name>
      </author>
      <author>
        <name>Strauss, MA</name>
      </author>
      <author>
        <name>Tayar, Jamie</name>
      </author>
      <author>
        <name>Tejos, N</name>
      </author>
      <author>
        <name>Treu, T</name>
        <uri>https://orcid.org/0000-0002-8460-0390</uri>
      </author>
      <author>
        <name>Van Saders, J</name>
      </author>
      <author>
        <name>Vican, L</name>
      </author>
      <author>
        <name>Villanueva, S</name>
      </author>
      <author>
        <name>Yuk, H</name>
      </author>
      <author>
        <name>Zakamska, NL</name>
      </author>
      <author>
        <name>Zhu, W</name>
      </author>
      <author>
        <name>Anderson, MD</name>
      </author>
      <author>
        <name>Arévalo, P</name>
      </author>
      <author>
        <name>Bazhaw, C</name>
      </author>
      <author>
        <name>Bisogni, S</name>
      </author>
      <author>
        <name>Borman, GA</name>
      </author>
      <author>
        <name>Bottorff, MC</name>
      </author>
      <author>
        <name>Brandt, WN</name>
      </author>
      <author>
        <name>Breeveld, AA</name>
      </author>
      <author>
        <name>Cackett, EM</name>
      </author>
      <author>
        <name>Carini, MT</name>
      </author>
      <author>
        <name>Crenshaw, DM</name>
      </author>
      <author>
        <name>De Lorenzo-Cáceres, A</name>
      </author>
      <author>
        <name>Dietrich, M</name>
      </author>
      <author>
        <name>Edelson, R</name>
      </author>
      <author>
        <name>Efimova, NV</name>
      </author>
      <author>
        <name>Ely, J</name>
      </author>
      <author>
        <name>Evans, PA</name>
      </author>
      <author>
        <name>Ferland, GJ</name>
      </author>
    </item>
    <item>
      <title>REVERBERATION MAPPING OF THE KEPLER FIELD AGN KA1858+4850</title>
      <link>https://escholarship.org/uc/item/53h6n2s0</link>
      <description>KA1858+4850 is a narrow-line Seyfert 1 galaxy at redshift 0.078 and is among the brightest active galaxies monitored by the Kepler mission. We have carried out a reverberation mapping campaign designed to measure the broad-line region size and estimate the mass of the black hole in this galaxy. We obtained 74 epochs of spectroscopic data using the Kast Spectrograph at the Lick 3 m telescope from 2012 February to November, and obtained complementary V-band images from five other ground-based telescopes. We measured the Hβ light curve lag with respect to the V-band continuum light curve using both cross-correlation techniques (CCF) and continuum light curve variability modeling with the JAVELIN method and found rest-frame lags of days and τJAVELINdays. The Hβ rms line profile has a width of σline = 770 ± 49 km s-1. Combining these two results and assuming a virial scale factor of f = 5.13, we obtained a virial estimate of for the mass of the central black hole and an Eddington ratio...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/53h6n2s0</guid>
      <pubDate>Thu, 2 Mar 2017 00:00:00 +0000</pubDate>
      <author>
        <name>Pei, Liuyi</name>
      </author>
      <author>
        <name>Barth, Aaron J</name>
        <uri>https://orcid.org/0000-0002-3026-0562</uri>
      </author>
      <author>
        <name>Aldering, Greg S</name>
      </author>
      <author>
        <name>Briley, Michael M</name>
      </author>
      <author>
        <name>Carroll, Carla J</name>
      </author>
      <author>
        <name>Carson, Daniel J</name>
      </author>
      <author>
        <name>Cenko, S Bradley</name>
      </author>
      <author>
        <name>Clubb, Kelsey I</name>
      </author>
      <author>
        <name>Cohen, Daniel P</name>
      </author>
      <author>
        <name>Cucchiara, Antonino</name>
      </author>
      <author>
        <name>Desjardins, Tyler D</name>
      </author>
      <author>
        <name>Edelson, Rick</name>
      </author>
      <author>
        <name>Fang, Jerome J</name>
      </author>
      <author>
        <name>Fedrow, Joseph M</name>
      </author>
      <author>
        <name>Filippenko, Alexei V</name>
        <uri>https://orcid.org/0000-0003-3460-0103</uri>
      </author>
      <author>
        <name>Fox, Ori D</name>
      </author>
      <author>
        <name>Furniss, Amy</name>
      </author>
      <author>
        <name>Gates, Elinor L</name>
      </author>
      <author>
        <name>Gregg, Michael</name>
      </author>
      <author>
        <name>Gustafson, Scott</name>
      </author>
      <author>
        <name>Horst, J Chuck</name>
      </author>
      <author>
        <name>Joner, Michael D</name>
      </author>
      <author>
        <name>Kelly, Patrick L</name>
      </author>
      <author>
        <name>Lacy, Mark</name>
      </author>
      <author>
        <name>Laney, C David</name>
      </author>
      <author>
        <name>Leonard, Douglas C</name>
      </author>
      <author>
        <name>Li, Weidong</name>
      </author>
      <author>
        <name>Malkan, Matthew A</name>
        <uri>https://orcid.org/0000-0001-6919-1237</uri>
      </author>
      <author>
        <name>Margon, Bruce</name>
      </author>
      <author>
        <name>Neeleman, Marcel</name>
      </author>
      <author>
        <name>Nguyen, My L</name>
      </author>
      <author>
        <name>Prochaska, J Xavier</name>
      </author>
      <author>
        <name>Ross, Nathaniel R</name>
      </author>
      <author>
        <name>Sand, David J</name>
      </author>
      <author>
        <name>Searcy, Kinchen J</name>
      </author>
      <author>
        <name>Shivvers, Isaac S</name>
      </author>
      <author>
        <name>Silverman, Jeffrey M</name>
      </author>
      <author>
        <name>Smith, Graeme H</name>
      </author>
      <author>
        <name>Suzuki, Nao</name>
      </author>
      <author>
        <name>Smith, Krista Lynne</name>
      </author>
      <author>
        <name>Tytler, David</name>
      </author>
      <author>
        <name>Werk, Jessica K</name>
      </author>
      <author>
        <name>Worseck, Gábor</name>
      </author>
    </item>
    <item>
      <title>THE DEEP2 GALAXY REDSHIFT SURVEY: DESIGN, OBSERVATIONS, DATA REDUCTION, AND REDSHIFTS**Based on observations taken at the W. M. Keck Observatory, which is operated jointly by the University of California and the California Institute of Technology, and on observations made with the NASA/ESO Hubble Space Telescope, obtained from the data archives at the Space Telescope Science Institute, which is operated by the Association of Universities for Research in Astronomy, Inc., under NASA contract NAS5-26555, and from the Canadian Astronomy Data Centre.</title>
      <link>https://escholarship.org/uc/item/11f44236</link>
      <description>We describe the design and data analysis of the DEEP2 Galaxy Redshift Survey, the densest and largest high-precision redshift survey of galaxies at z ∼ 1 completed to date. The survey was designed to conduct a comprehensive census of massive galaxies, their properties, environments, and large-scale structure down to absolute magnitude MB = -20 at z ∼ 1 via ∼90 nights of observation on the Keck telescope. The survey covers an area of 2.8 deg2 divided into four separate fields observed to a limiting apparent magnitude of RAB = 24.1. Objects with z ≲ 0.7 are readily identifiable using BRI photometry and rejected in three of the four DEEP2 fields, allowing galaxies with z &amp;gt; 0.7 to be targeted ∼2.5 times more efficiently than in a purely magnitude-limited sample. Approximately 60% of eligible targets are chosen for spectroscopy, yielding nearly 53,000 spectra and more than 38,000 reliable redshift measurements. Most of the targets that fail to yield secure redshifts are blue objects...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/11f44236</guid>
      <pubDate>Thu, 2 Mar 2017 00:00:00 +0000</pubDate>
      <author>
        <name>Newman, Jeffrey A</name>
      </author>
      <author>
        <name>Cooper, Michael C</name>
        <uri>https://orcid.org/0000-0003-1371-6019</uri>
      </author>
      <author>
        <name>Davis, Marc</name>
      </author>
      <author>
        <name>Faber, SM</name>
      </author>
      <author>
        <name>Coil, Alison L</name>
        <uri>https://orcid.org/0000-0002-2583-5894</uri>
      </author>
      <author>
        <name>Guhathakurta, Puragra</name>
      </author>
      <author>
        <name>Koo, David C</name>
        <uri>https://orcid.org/0000-0003-3385-6799</uri>
      </author>
      <author>
        <name>Phillips, Andrew C</name>
      </author>
      <author>
        <name>Conroy, Charlie</name>
      </author>
      <author>
        <name>Dutton, Aaron A</name>
      </author>
      <author>
        <name>Finkbeiner, Douglas P</name>
      </author>
      <author>
        <name>Gerke, Brian F</name>
      </author>
      <author>
        <name>Rosario, David J</name>
      </author>
      <author>
        <name>Weiner, Benjamin J</name>
      </author>
      <author>
        <name>Willmer, CNA</name>
      </author>
      <author>
        <name>Yan, Renbin</name>
      </author>
      <author>
        <name>Harker, Justin J</name>
      </author>
      <author>
        <name>Kassin, Susan A</name>
      </author>
      <author>
        <name>Konidaris, NP</name>
      </author>
      <author>
        <name>Lai, Kamson</name>
      </author>
      <author>
        <name>Madgwick, Darren S</name>
      </author>
      <author>
        <name>Noeske, KG</name>
      </author>
      <author>
        <name>Wirth, Gregory D</name>
      </author>
      <author>
        <name>Connolly, AJ</name>
      </author>
      <author>
        <name>Kaiser, N</name>
      </author>
      <author>
        <name>Kirby, Evan N</name>
      </author>
      <author>
        <name>Lemaux, Brian C</name>
      </author>
      <author>
        <name>Lin, Lihwai</name>
      </author>
      <author>
        <name>Lotz, Jennifer M</name>
      </author>
      <author>
        <name>Luppino, GA</name>
      </author>
      <author>
        <name>Marinoni, C</name>
      </author>
      <author>
        <name>Matthews, Daniel J</name>
      </author>
      <author>
        <name>Metevier, Anne</name>
      </author>
      <author>
        <name>Schiavon, Ricardo P</name>
      </author>
    </item>
    <item>
      <title>Improved Cosmological Constraints from New, Old, and Combined Supernova Data Sets</title>
      <link>https://escholarship.org/uc/item/8646z73c</link>
      <description>We present a new compilation of Type Ia supernovae (SNe Ia), a new data set of low-redshift nearby-Hubble-flow SNe, and new analysis procedures to work with these heterogeneous compilations. This “Union” compilation of 414 SNe Ia, which reduces to 307 SNe after selection cuts, includes the recent large samples of SNe Ia from the Supernova Legacy Survey and ESSENCE Survey, the older data sets, as well as the recently extended data set of distant supernovae observed with the Hubble Space Telescope (HST). A single, consistent, and blind analysis procedure is used for all the various SN Ia subsamples, and a new procedure is implemented that consistently weights the heterogeneous data sets and rejects outliers. We present the latest results from this Union compilation and discuss the cosmological constraints from this new compilation and its combination with other cosmological measurements (CMB and BAO). The constraint we obtain from supernovae on the dark energy density is ΩΛ = 0.713+...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/8646z73c</guid>
      <pubDate>Fri, 13 Jan 2017 00:00:00 +0000</pubDate>
      <author>
        <name>Kowalski, M</name>
      </author>
      <author>
        <name>Rubin, D</name>
      </author>
      <author>
        <name>Aldering, G</name>
      </author>
      <author>
        <name>Agostinho, RJ</name>
      </author>
      <author>
        <name>Amadon, A</name>
      </author>
      <author>
        <name>Amanullah, R</name>
      </author>
      <author>
        <name>Balland, C</name>
      </author>
      <author>
        <name>Barbary, K</name>
      </author>
      <author>
        <name>Blanc, G</name>
      </author>
      <author>
        <name>Challis, PJ</name>
      </author>
      <author>
        <name>Conley, A</name>
      </author>
      <author>
        <name>Connolly, NV</name>
      </author>
      <author>
        <name>Covarrubias, R</name>
      </author>
      <author>
        <name>Dawson, KS</name>
      </author>
      <author>
        <name>Deustua, SE</name>
      </author>
      <author>
        <name>Ellis, R</name>
      </author>
      <author>
        <name>Fabbro, S</name>
      </author>
      <author>
        <name>Fadeyev, V</name>
        <uri>https://orcid.org/0000-0003-0154-4328</uri>
      </author>
      <author>
        <name>Fan, X</name>
      </author>
      <author>
        <name>Farris, B</name>
      </author>
      <author>
        <name>Folatelli, G</name>
      </author>
      <author>
        <name>Frye, BL</name>
      </author>
      <author>
        <name>Garavini, G</name>
      </author>
      <author>
        <name>Gates, EL</name>
        <uri>https://orcid.org/0000-0002-3739-0423</uri>
      </author>
      <author>
        <name>Germany, L</name>
      </author>
      <author>
        <name>Goldhaber, G</name>
      </author>
      <author>
        <name>Goldman, B</name>
      </author>
      <author>
        <name>Goobar, A</name>
      </author>
      <author>
        <name>Groom, DE</name>
      </author>
      <author>
        <name>Haissinski, J</name>
      </author>
      <author>
        <name>Hardin, D</name>
      </author>
      <author>
        <name>Hook, I</name>
      </author>
      <author>
        <name>Kent, S</name>
      </author>
      <author>
        <name>Kim, AG</name>
        <uri>https://orcid.org/0000-0001-6315-8743</uri>
      </author>
      <author>
        <name>Knop, RA</name>
        <uri>https://orcid.org/0000-0002-3803-1641</uri>
      </author>
      <author>
        <name>Lidman, C</name>
      </author>
      <author>
        <name>Linder, EV</name>
      </author>
      <author>
        <name>Mendez, J</name>
      </author>
      <author>
        <name>Meyers, J</name>
      </author>
      <author>
        <name>Miller, GJ</name>
      </author>
      <author>
        <name>Moniez, M</name>
      </author>
      <author>
        <name>Mourão, AM</name>
      </author>
      <author>
        <name>Newberg, H</name>
      </author>
      <author>
        <name>Nobili, S</name>
      </author>
      <author>
        <name>Nugent, PE</name>
        <uri>https://orcid.org/0000-0002-3389-0586</uri>
      </author>
      <author>
        <name>Pain, R</name>
      </author>
      <author>
        <name>Perdereau, O</name>
      </author>
      <author>
        <name>Perlmutter, S</name>
        <uri>https://orcid.org/0000-0002-4436-4661</uri>
      </author>
      <author>
        <name>Phillips, MM</name>
      </author>
      <author>
        <name>Prasad, V</name>
      </author>
      <author>
        <name>Quimby, R</name>
      </author>
      <author>
        <name>Regnault, N</name>
      </author>
      <author>
        <name>Rich, J</name>
      </author>
      <author>
        <name>Rubenstein, EP</name>
      </author>
      <author>
        <name>Ruiz-Lapuente, P</name>
      </author>
      <author>
        <name>Santos, FD</name>
      </author>
      <author>
        <name>Schaefer, BE</name>
      </author>
      <author>
        <name>Schommer, RA</name>
      </author>
      <author>
        <name>Smith, RC</name>
      </author>
      <author>
        <name>Soderberg, AM</name>
      </author>
      <author>
        <name>Spadafora, AL</name>
      </author>
      <author>
        <name>Strolger, L-G</name>
      </author>
      <author>
        <name>Strovink, M</name>
      </author>
      <author>
        <name>Suntzeff, NB</name>
      </author>
      <author>
        <name>Suzuki, N</name>
      </author>
      <author>
        <name>Thomas, RC</name>
      </author>
      <author>
        <name>Walton, NA</name>
      </author>
      <author>
        <name>Wang, L</name>
      </author>
      <author>
        <name>Wood-Vasey, WM</name>
      </author>
      <author>
        <name>Yun, JL</name>
      </author>
    </item>
    <item>
      <title>IMPROVED STANDARDIZATION OF TYPE II-P SUPERNOVAE: APPLICATION TO AN EXPANDED SAMPLE</title>
      <link>https://escholarship.org/uc/item/1f8401t6</link>
      <description>In the epoch of precise and accurate cosmology, cross-confirmation using a variety of cosmographic methods is paramount to circumvent systematic uncertainties. Owing to progenitor histories and explosion physics differing from those of Type Ia supernovae (SNe Ia), Type II-plateau supernovae (SNe II-P) are unlikely to be affected by evolution in the same way. Based on a new analysis of 17 SNe II-P, and on an improved methodology, we find that SNe II-P are good standardizable candles, almost comparable to SNe Ia. We derive a tight Hubble diagram with a dispersion of 10% in distance, using the simple correlation between luminosity and photospheric velocity introduced by Hamuy and Pinto. We show that the descendent method of Nugent et al. can be further simplified and that the correction for dust extinction has low statistical impact. We find that our SN sample favors, on average, a very steep dust law with total to selective extinction RV &amp;lt; 2. Such an extinction law has been recently...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/1f8401t6</guid>
      <pubDate>Fri, 13 Jan 2017 00:00:00 +0000</pubDate>
      <author>
        <name>Poznanski, Dovi</name>
      </author>
      <author>
        <name>Butler, Nathaniel</name>
      </author>
      <author>
        <name>Filippenko, Alexei V</name>
        <uri>https://orcid.org/0000-0003-3460-0103</uri>
      </author>
      <author>
        <name>Ganeshalingam, Mohan</name>
      </author>
      <author>
        <name>Li, Weidong</name>
      </author>
      <author>
        <name>Bloom, Joshua S</name>
      </author>
      <author>
        <name>Chornock, Ryan</name>
        <uri>https://orcid.org/0000-0002-7706-5668</uri>
      </author>
      <author>
        <name>Foley, Ryan J</name>
        <uri>https://orcid.org/0000-0002-2445-5275</uri>
      </author>
      <author>
        <name>Nugent, Peter E</name>
        <uri>https://orcid.org/0000-0002-3389-0586</uri>
      </author>
      <author>
        <name>Silverman, Jeffrey M</name>
      </author>
      <author>
        <name>Cenko, S Bradley</name>
      </author>
      <author>
        <name>Gates, Elinor L</name>
        <uri>https://orcid.org/0000-0002-3739-0423</uri>
      </author>
      <author>
        <name>Leonard, Douglas C</name>
      </author>
      <author>
        <name>Miller, Adam A</name>
      </author>
      <author>
        <name>Modjaz, Maryam</name>
      </author>
      <author>
        <name>Serduke, Frank JD</name>
      </author>
      <author>
        <name>Smith, Nathan</name>
      </author>
      <author>
        <name>Swift, Brandon J</name>
      </author>
      <author>
        <name>Wong, Diane S</name>
      </author>
    </item>
    <item>
      <title>The Type Ia Supernova 1999aw: A Probable 1999aa-like Event in a Low-Luminosity Host Galaxy</title>
      <link>https://escholarship.org/uc/item/92r7x51m</link>
      <description>SN 1999aw was discovered during the first campaign of the Nearby Galaxies Supernova Search project. This luminous, slow-declining [Δm15(B) = 0.81 ± 0.03] Type Ia supernova was noteworthy in at least two respects. First, it occurred in an extremely low luminosity host galaxy that was not visible in the template images nor in initial subsequent deep imaging. Second, the photometric and spectral properties of this supernova indicate that it very likely was similar to the subclass of Type Ia supernovae whose prototype is SN 1999aa. This paper presents the BVRI and JsHKs light curves of SN 1999aw (through ∼100 days past maximum light), as well as several epochs of optical spectra. From these data, we calculate the bolometric light curve and give estimates of the luminosity at maximum light and the initial 56Ni mass. In addition, we present deep BVI images obtained recently with the Baade 6.5 m telescope at Las Campanas Observatory that reveal the remarkably low-luminosity host galaxy.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/92r7x51m</guid>
      <pubDate>Wed, 11 Jan 2017 00:00:00 +0000</pubDate>
      <author>
        <name>Strolger, L-G</name>
      </author>
      <author>
        <name>Smith, RC</name>
      </author>
      <author>
        <name>Suntzeff, NB</name>
      </author>
      <author>
        <name>Phillips, MM</name>
      </author>
      <author>
        <name>Aldering, G</name>
      </author>
      <author>
        <name>Nugent, P</name>
        <uri>https://orcid.org/0000-0002-3389-0586</uri>
      </author>
      <author>
        <name>Knop, R</name>
        <uri>https://orcid.org/0000-0002-3803-1641</uri>
      </author>
      <author>
        <name>Perlmutter, S</name>
        <uri>https://orcid.org/0000-0002-4436-4661</uri>
      </author>
      <author>
        <name>Schommer, RA</name>
      </author>
      <author>
        <name>Ho, LC</name>
      </author>
      <author>
        <name>Hamuy, M</name>
      </author>
      <author>
        <name>Krisciunas, K</name>
      </author>
      <author>
        <name>Germany, LM</name>
      </author>
      <author>
        <name>Covarrubias, R</name>
      </author>
      <author>
        <name>Candia, P</name>
      </author>
      <author>
        <name>Athey, A</name>
      </author>
      <author>
        <name>Blanc, G</name>
      </author>
      <author>
        <name>Bonacic, A</name>
      </author>
      <author>
        <name>Bowers, T</name>
      </author>
      <author>
        <name>Conley, A</name>
      </author>
      <author>
        <name>Dahlén, T</name>
      </author>
      <author>
        <name>Freedman, W</name>
      </author>
      <author>
        <name>Galaz, G</name>
      </author>
      <author>
        <name>Gates, E</name>
        <uri>https://orcid.org/0000-0002-3739-0423</uri>
      </author>
      <author>
        <name>Goldhaber, G</name>
      </author>
      <author>
        <name>Goobar, A</name>
      </author>
      <author>
        <name>Groom, D</name>
      </author>
      <author>
        <name>Hook, IM</name>
      </author>
      <author>
        <name>Marzke, R</name>
      </author>
      <author>
        <name>Mateo, M</name>
      </author>
      <author>
        <name>McCarthy, P</name>
      </author>
      <author>
        <name>Méndez, J</name>
      </author>
      <author>
        <name>Muena, C</name>
      </author>
      <author>
        <name>Persson, SE</name>
      </author>
      <author>
        <name>Quimby, R</name>
      </author>
      <author>
        <name>Roth, M</name>
      </author>
      <author>
        <name>Ruiz-Lapuente, P</name>
      </author>
      <author>
        <name>Seguel, J</name>
      </author>
      <author>
        <name>Szentgyorgyi, A</name>
      </author>
      <author>
        <name>von Braun, K</name>
      </author>
      <author>
        <name>Wood-Vasey, WM</name>
      </author>
      <author>
        <name>York, T</name>
      </author>
    </item>
    <item>
      <title>SUB-KILOPARSEC ALMA IMAGING OF COMPACT STAR-FORMING GALAXIES AT z ∼ 2.5: REVEALING THE FORMATION OF DENSE GALACTIC CORES IN THE PROGENITORS OF COMPACT QUIESCENT GALAXIES</title>
      <link>https://escholarship.org/uc/item/1844r5rs</link>
      <description>We present spatially resolved Atacama Large Millimeter/submillimeter Array (ALMA) 870 μm dust continuum maps of six massive, compact, dusty star-forming galaxies at z ∼ 2.5. These galaxies are selected for their small rest-frame optical sizes (reF160W ∼ 1.6 kpc) and high stellar mass densities that suggest that they are direct progenitors of compact quiescent galaxies at z ∼ 2. The deep observations yield high far-infrared (FIR) luminosities of LIR = 1012.3-12.8 L⊙ and star formation rates (SFRs) of SFR = 200-700 M o yr-1, consistent with those of typical star-forming "main sequence" galaxies. The high spatial resolution (FWHM ∼ 0.″12-0.″18) ALMA and Hubble Space Telescope photometry are combined to construct deconvolved, mean radial profiles of their stellar mass and (UV+IR) SFR. We find that the dusty, nuclear IR-SFR overwhelmingly dominates the bolometric SFR up to r ∼ 5 kpc, by a factor of over 100× from the unobscured UV-SFR. Furthermore, the effective radius of the mean...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/1844r5rs</guid>
      <pubDate>Tue, 2 Aug 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Barro, G</name>
      </author>
      <author>
        <name>Kriek, M</name>
      </author>
      <author>
        <name>Pérez-González, PG</name>
      </author>
      <author>
        <name>Trump, JR</name>
      </author>
      <author>
        <name>Koo, DC</name>
        <uri>https://orcid.org/0000-0003-3385-6799</uri>
      </author>
      <author>
        <name>Faber, SM</name>
      </author>
      <author>
        <name>Dekel, A</name>
      </author>
      <author>
        <name>Primack, JR</name>
        <uri>https://orcid.org/0000-0001-5091-5098</uri>
      </author>
      <author>
        <name>Guo, Y</name>
      </author>
      <author>
        <name>Kocevski, DD</name>
      </author>
      <author>
        <name>Muñoz-Mateos, JC</name>
      </author>
      <author>
        <name>Rujoparkarn, W</name>
      </author>
      <author>
        <name>Seth, K</name>
      </author>
    </item>
    <item>
      <title>EVOLUTION OF INTRINSIC SCATTER IN THE SFR–STELLAR MASS CORRELATION AT 0.5 &amp;lt; z &amp;lt; 3</title>
      <link>https://escholarship.org/uc/item/0w29b2rv</link>
      <description>We present estimates of intrinsic scatter in the Star Formation Rate (SFR) -
Stellar Mass (M*) correlation in the redshift range 0.5 &amp;lt; z &amp;lt; 3.0 and in the
mass range 10^7 &amp;lt; M* &amp;lt; 10^11 Msun. We utilize photometry in the Hubble
Ultradeep Field (HUDF12), Ultraviolet Ultra Deep Field (UVUDF) campaigns and
CANDELS/GOODS-S. We estimate SFR, M* from broadband Spectral Energy
Distributions (SEDs) and the best available redshifts. The maximum depth of the
HUDF photometry (F160W 29.9 AB, 5 sigma depth) probes the SFR-M* correlation
down to M* ~ 10 ^7 Msun, a factor of 10-100X lower in M* than previous studies,
and comparable to dwarf galaxies in the local universe. We find the slope of
the SFR-M* relationship to be near unity at all redshifts and the normalization
to decrease with cosmic time. We find a moderate increase in intrinsic scatter
with cosmic time from 0.2 to 0.4 dex across the epoch of peak cosmic star
formation. None of our redshift bins show a statistically significant...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/0w29b2rv</guid>
      <pubDate>Tue, 2 Aug 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Kurczynski, Peter</name>
      </author>
      <author>
        <name>Gawiser, Eric</name>
      </author>
      <author>
        <name>Acquaviva, Viviana</name>
      </author>
      <author>
        <name>Bell, Eric F</name>
      </author>
      <author>
        <name>Dekel, Avishai</name>
      </author>
      <author>
        <name>de Mello, Duilia F</name>
      </author>
      <author>
        <name>Ferguson, Henry C</name>
      </author>
      <author>
        <name>Gardner, Jonathan P</name>
      </author>
      <author>
        <name>Grogin, Norman A</name>
      </author>
      <author>
        <name>Guo, Yicheng</name>
      </author>
      <author>
        <name>Hopkins, Philip F</name>
      </author>
      <author>
        <name>Koekemoer, Anton M</name>
      </author>
      <author>
        <name>Koo, David C</name>
        <uri>https://orcid.org/0000-0003-3385-6799</uri>
      </author>
      <author>
        <name>Lee, Seong-Kook</name>
      </author>
      <author>
        <name>Mobasher, Bahram</name>
      </author>
      <author>
        <name>Primack, Joel R</name>
        <uri>https://orcid.org/0000-0001-5091-5098</uri>
      </author>
      <author>
        <name>Rafelski, Marc</name>
      </author>
      <author>
        <name>Soto, Emmaris</name>
      </author>
      <author>
        <name>Teplitz, Harry I</name>
      </author>
    </item>
    <item>
      <title>Astrometry with MCAO at Gemini and at ELTs</title>
      <link>https://escholarship.org/uc/item/95g9q111</link>
      <description>We present in this study a first analysis of the astrometric error budget of absolute astrometry relative to back- ground galaxies using adaptive optics. We use for this analysis multi-conjugated adaptive optics (MCAO) images obtained with GeMS/GSAOI at Gemini South. We find that it is possible to obtain 0.3 mas reference precision in a random field with 1 hour on source using faint background galaxies. Systematic errors are correctable below that level, such that the overall error is approximately 0.4 mas. Because the reference sources are extended, we find it necessary to correct for the dependency of the PSF centroid on the used aperture size, which would oth- erwise cause an important bias. This effect needs also to be considered for Extremely Large Telescopes (ELTs). When this effect is corrected, ELTs have the potential to measure proper motions of dwarfs galaxies around M31 with 10 km/s accuracy over a baseline of 5 years.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/95g9q111</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Fritz, Tobias</name>
      </author>
    </item>
    <item>
      <title>Optimizing LGS WFS Pixel Processing in the Context of Evolving Turbulence and Sodium Profile</title>
      <link>https://escholarship.org/uc/item/8ft440wn</link>
      <description>The time evolution of the sodium profile greatly impact the accuracy of laser guide star (LGS) wavefront sensor (WFS) measurements, for either the traditional thresholded center of gravity or the more advanced constraint matched filter/correlation algorithms. As a result, circularly symmetric wavefront aberrations will be induced in the adaptive optics (AO) corrected science wavefront for center launch LGS. In this paper, we describe our scheme to mitigate this issue by updating pixel processing parameters and employing a truth WFS during LGS AO operation. We also present simulation results using the sodium profiles measured by the UBC lidar. In addition, the time evolution of the turbulence profile will also have an impact on the pixel processing accuracy for the advanced algorithms, as well as the minimum variance wavefront reconstruction. We present simulation results showing how often we have to update the corresponding parameters to minimize the effect.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/8ft440wn</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Wang, Lianqi</name>
      </author>
    </item>
    <item>
      <title>Preliminary performance analysis of a LGS system for GTC</title>
      <link>https://escholarship.org/uc/item/8979r2d9</link>
      <description>The Gran Telescopio Canarias (GTC) Adaptive Optics (AO) system, designed to work with Natural Guide Stars (NGS), is in its laboratory integration phase. The upgrade for the operation with a Laser Guide Star (LGS) has been approved, and the design of the LGS Facility is going to start. Hereafter we analyse the performance of a LGS AO system taking into account the GTC characteristics and error budget. Two scenarios are studied: launching the laser from the centre of the telescope aperture behind the secondary (on axis) and launching from the side of the primary mirror (off axis). The simulations have been performed using the Fractal Iterative Method (FrIM), a fast-reconstruction algorithm, with the parameters of the GTC for the telescope, the atmospheric profiles of the Observatorio del Roque de Los Muchachos (ORM), and data from the laser star unit developed by ESO.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/8979r2d9</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Montilla, Iciar</name>
      </author>
      <author>
        <name>Reyes Garcia-Talavera, Marcos</name>
      </author>
      <author>
        <name>Bello, Dolores</name>
      </author>
    </item>
    <item>
      <title>Simulations of AO for the E-ELT and its instruments</title>
      <link>https://escholarship.org/uc/item/7kh262xf</link>
      <description>We present an overview of the latest simulation results obtained for the European Extremely Large Telescope's different Adaptive Optics systems. Different areas of the telescope and instruments are covered. Simulations showing how a single conjugated AO system can be used to detect a scalloping error is shown. We show that when the scalloping error modes are entered in the reconstruction modal basis, the DM shape can be used to estimate the scalloping error through a simple matrix vector multiply. Temporal averaging allows to get rid of the atmospheric noise on the scalloping measurement assuming a perfect “scalloping actuator” and to get a measurement accuracy of ~20nm rms. In a second part, we focus on a few results obtained on tomographic AO systems, like for example the sensitivity to the number of Deformable Mirrors and their pitch in multi-conjugate AO, and the impact of the outer scale of turbulence on Laser tomography AO.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/7kh262xf</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Le Louarn, Miska</name>
      </author>
    </item>
    <item>
      <title>Laser Pointing Camera: a valuable tool for the LGS-AO operations</title>
      <link>https://escholarship.org/uc/item/758421jz</link>
      <description>Every observatory using LGS-AO routinely has the experience of the long time needed to bring and acquire the laser guide star in the wavefront sensor field of view. This is mostly due to the difficulty of creating LGS pointing models, because of the opto-mechanical flexures and hysteresis in the launch and receiver telescope structures.The launch telescopes are normally sitting on the mechanical structure of the larger receiver telescope. The LGS acquisition time is even longer in case of multiple LGS systems. In this framework the optimization of the LGS systems absolute pointing accuracy is relevant to boost the time efficiency of both science and technical observations.In this paper we describe the design and functionalities of the Laser Pointing Camera (LPC)3, developed at OAR for the 4LGSF of the ESO Adaptive Optics Facility. The LPC allows to have a fast pointing of the multiple LGS on the AO WFS during the initial acquisition phase of the telescope preset, thus reducing...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/758421jz</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Centrone, Mauro</name>
      </author>
      <author>
        <name>Bonaccini Calia, Domenico</name>
      </author>
      <author>
        <name>Pedichini, Fernando</name>
      </author>
      <author>
        <name>Cerruto, Antonio</name>
      </author>
      <author>
        <name>Ricciardi, Andrea</name>
      </author>
      <author>
        <name>Ambrosino, Filippo</name>
      </author>
    </item>
    <item>
      <title>Commissioning of ARGOS at LBT: adaptive optics procedures</title>
      <link>https://escholarship.org/uc/item/6js4k5m5</link>
      <description>ARGOS is the laser guide star facility of the Large Binocular Telescope (LBT). It implements a Rayleigh Laser Guide Star system that provides Ground Layer Adaptive Optics (GLAO) correction for the LUCIs, the 2 wide- field near-infrared imagers and multi-object spectrographs installed on the 2 eyes of LBT. In this paper we describe how LBT’s adaptive optics operations have been tailored to ARGOS’s use cases based on the experience developed during over the ARGOS commissioning. We focus on all the aspects that are influenced by the use of the Laser Guide Stars, from collimation to acquisition and LGS guiding and we details the sequences to start, pause and resume the adaptive correction.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/6js4k5m5</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Busoni, Lorenzo</name>
      </author>
      <author>
        <name>Bonaglia, Marco</name>
      </author>
      <author>
        <name>Borelli, Jose</name>
      </author>
      <author>
        <name>Deysenroth, Matthias</name>
      </author>
      <author>
        <name>Esposito, Simone</name>
      </author>
      <author>
        <name>Gaessler, Wolfgang</name>
      </author>
      <author>
        <name>Gemperlein, Hans</name>
      </author>
      <author>
        <name>Kulas, Martin</name>
      </author>
      <author>
        <name>Lefebvre, Michael</name>
      </author>
      <author>
        <name>Mazzoni, Tommaso</name>
      </author>
      <author>
        <name>Orban de Xivry, Gilles</name>
      </author>
      <author>
        <name>Peter, Diethard</name>
      </author>
      <author>
        <name>Puglisi, Alfio</name>
      </author>
      <author>
        <name>Raab, Walfried</name>
      </author>
      <author>
        <name>Rabien, Sebastian</name>
      </author>
      <author>
        <name>Rahmer, Gustavo</name>
      </author>
      <author>
        <name>Sivitilli, Alex</name>
      </author>
      <author>
        <name>Storm, Jesper</name>
      </author>
      <author>
        <name>Ziegleder, Julian</name>
      </author>
    </item>
    <item>
      <title>Science operation of the SOAR Adaptive Module (SAM)</title>
      <link>https://escholarship.org/uc/item/666710ff</link>
      <description>The adaptive module of the 4-m SOAR telescope (SAM) corrects ground-layer turbulence using a UV laser guide star. It has been commissioned in 2013 and in regular science operation since 2014A. SAM works with the CCD imager covering a 3′ field or with the speckle camera. The instrument operates routinely and stably, delivering in the I band the image quality equal to the free-atmosphere seeing. Preparation of the observing runs and the operational sequence are covered briefly. Observing programs executed so far are presented, ranging from star clusters and binary stars to deep-space objects and gravitational lenses. Emission-line objects were observed with narrow-band filters and Fabry-Perot etalon. Future science use of SAM and its synergy with wide-field optical sky surveys are outlined. New instruments for SAM and its potential upgrades are considered.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/666710ff</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Tokovinin, Andrey</name>
      </author>
    </item>
    <item>
      <title>Coupling of WFS with a segmented DM “Test of different concepts: SH, Pyramid, Zernike phase sensor”</title>
      <link>https://escholarship.org/uc/item/64r6t2cm</link>
      <description>LAM is developing several R&amp;amp;D activities for E-ELT instrumentation, in particular, different WFS concepts are investigated (Pyramid, ZELDA, a Zernike phase mask sensor, Phase diversity or still NL Curvature) and an ESO-EELT M1 mirror segment (1.5 m) has been demonstrated. Segmented mirrors are not only the solution for the problem of ELTs monolithic size but also for other questions related to fabrication, optics replacement and transport. And, they are widely used today for other applications: fiber coupling, LGS beam shaping, etc. Their only problem is how to assure the cophasing of segments to take advantage of the full optimum size. In the present work, we study the sensitivity to different WFS (Sack-Hartmann, Pyramid and ZELDA) to pupil phase discontinuity using a PTT mirror from Iris AO. Various test such as segment phasing, stability, saturation, flat, or still the addressing mode are then performed and compared.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/64r6t2cm</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>El Hadi, Kacem</name>
      </author>
    </item>
    <item>
      <title>SCExAO: the first high contrast exoplanet imager on an ELT?</title>
      <link>https://escholarship.org/uc/item/5t0211tn</link>
      <description>&lt;p&gt;The Subaru Coronagraphic Extreme Adaptive Optics (SCExAO) instrument, currently under development for the Subaru Telescope, optimally combines state-of-the-art technologies to study exoplanets and stellar environments at the diffraction limit, both in visible and infrared light (0.6 to 2.4 μm). The instrument already includes an ultra-fast visible pyramid wavefront sensor operating at 3.5 kHz, a 2k-actuator deformable mirror, a set of optimal coronagraphs that can work as close as 1 l/D, a low-order wavefront sensor, a high-speed speckle control loop, and two visible interferometric modules, VAMPIRES and FIRST. After the integration of the integral field spectrograph CHARIS and a Microwave Kinetic Inductance Detector (MKID) in 2016, SCExAO will be one of the most powerful and effective tools for characterizing exoplanets and disks. None of the ELTs include a high-contrast imager and spectrograph among the first generation of instruments. To address this, we propose to upgrade...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/5t0211tn</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Lozi, Julien</name>
      </author>
      <author>
        <name>Jovanovic, Nemanja</name>
      </author>
      <author>
        <name>Guyon, Olivier</name>
      </author>
      <author>
        <name>Males, Jared</name>
      </author>
      <author>
        <name>Singh, Garima</name>
      </author>
      <author>
        <name>Doughty, Danielle</name>
      </author>
      <author>
        <name>Pathak, Prashant</name>
      </author>
      <author>
        <name>Goebel, Sean</name>
      </author>
      <author>
        <name>Kudo, Tomoyuki</name>
      </author>
      <author>
        <name>Martinache, Frantz</name>
      </author>
    </item>
    <item>
      <title>E-ELT M4 Unit updated design and prototype results</title>
      <link>https://escholarship.org/uc/item/5q66922d</link>
      <description>We present the current design of the E-ELT M4 deformable mirror consolidated at the conclusion of the Preliminary Design activity. The most prominent features of this system are the SiC Reference Body now mounted to the positioner by a whiffle-tree and cell structure, actuators bricks, capacitive sensors layout and new cooling concept. All this allowed achieving the challenging stability requirements demanded to the M4U, as proved by analysis and test results measured on the Demonstration Prototype, which has been updated to implement the current design. The final design and construction contract is now on-going: Final Design Review is planned on mid 2017 and delivery to site by late 2022.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/5q66922d</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Biasi, Roberto</name>
      </author>
      <author>
        <name>Gallieni, Daniele</name>
      </author>
      <author>
        <name>Briguglio, Runa</name>
      </author>
      <author>
        <name>Vernet, Elise</name>
      </author>
      <author>
        <name>Andrighettoni, Mario</name>
      </author>
      <author>
        <name>Angerer, Gerald</name>
      </author>
      <author>
        <name>Pescoller, Dietrich</name>
      </author>
      <author>
        <name>Manetti, Mauro</name>
      </author>
      <author>
        <name>Tintori, Matteo</name>
      </author>
      <author>
        <name>Mantegazza, Marco</name>
      </author>
      <author>
        <name>Lazzarini, Paolo</name>
      </author>
      <author>
        <name>Fumi, Pierluigi</name>
      </author>
      <author>
        <name>Anaclerio, Vincenzo</name>
      </author>
      <author>
        <name>Xompero, Marco</name>
      </author>
      <author>
        <name>Pariani, Giorgio</name>
      </author>
      <author>
        <name>Riccardi, Armando</name>
      </author>
      <author>
        <name>Cayrel, Marc</name>
      </author>
      <author>
        <name>Dierickx, Philippe</name>
      </author>
      <author>
        <name>Hubin, Norbert</name>
      </author>
      <author>
        <name>Kornweibel, Nick</name>
      </author>
      <author>
        <name>Pettazzi, Lorenzo</name>
      </author>
    </item>
    <item>
      <title>Astrometry with MCAO at Gemini and at ELTs</title>
      <link>https://escholarship.org/uc/item/56p467d6</link>
      <description>We present in this study a first analysis of the astrometric error budget of absolute astrometry relative to back- ground galaxies using adaptive optics. We use for this analysis multi-conjugated adaptive optics (MCAO) images obtained with GeMS/GSAOI at Gemini South. We find that it is possible to obtain 0.3 mas reference precision in a random field with 1 hour on source using faint background galaxies. Systematic errors are correctable below that level, such that the overall error is approximately 0.4 mas. Because the reference sources are extended, we find it necessary to correct for the dependency of the PSF centroid on the used aperture size, which would oth- erwise cause an important bias. This effect needs also to be considered for Extremely Large Telescopes (ELTs). When this effect is corrected, ELTs have the potential to measure proper motions of dwarfs galaxies around M31 with 10 km/s accuracy over a baseline of 5 years.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/56p467d6</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Fritz, Tobias</name>
      </author>
      <author>
        <name>Kallivayalil, Nitya</name>
      </author>
      <author>
        <name>Carrasco, Eleazar R.</name>
      </author>
      <author>
        <name>Neichel, Benoit</name>
      </author>
      <author>
        <name>Davies, Richard</name>
      </author>
      <author>
        <name>Beaton, Rachael</name>
      </author>
      <author>
        <name>Angell, Dylan</name>
      </author>
      <author>
        <name>Linden, Sean</name>
      </author>
      <author>
        <name>Zivick, Paul</name>
      </author>
      <author>
        <name>Majewski, Steve</name>
      </author>
      <author>
        <name>Damke, Gulliermo</name>
      </author>
      <author>
        <name>Boylan-Kolchin, Mike</name>
      </author>
      <author>
        <name>van der Marel, Roeland</name>
      </author>
      <author>
        <name>Sohn, Tony</name>
      </author>
    </item>
    <item>
      <title>Adaptive Optics Program at TMT</title>
      <link>https://escholarship.org/uc/item/4gr3p2pf</link>
      <description>The TMT first light Adaptive Optics (AO) facility consists of the Narrow Field Infra-Red AO System (NFIRAOS) and the associated Laser Guide Star Facility (LGSF). NFIRAOS is a 60 x 60 laser guide star (LGS) multi-conjugate AO (MCAO) system, which provides uniform, diffraction-limited performance in the J, H, and K bands over 17-30 arc sec diameter fields with 50 per cent sky coverage at the galactic pole, as required to support the TMT science cases. NFIRAOS includes two deformable mirrors, six laser guide star wavefront sensors, and several low-order, infrared, natural guide star wavefront sensors within each client instrument. The first light LGSF system includes six sodium lasers required to generate the NFIRAOS laser guide stars. In this paper, we will provide an update on the progress in designing, modeling and validating the TMT first light AO systems and their components over the last two years. This will include the final design activities for NFIRAOS, preliminary design...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/4gr3p2pf</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Boyer, Corinne</name>
      </author>
    </item>
    <item>
      <title>Adaptive Optics Point Spread Function Reconstruction at W. M. Keck Observatory in Laser &amp;amp; Natural Guide Star Modes : Final Developments</title>
      <link>https://escholarship.org/uc/item/3wq362xn</link>
      <description>&lt;p&gt;We present the final development of our point spread function reconstruction algorithm for the Keck-II telescope adaptive optics system, in laser and natural guide star modes. The method makes use of AO loop teleme- try, nearby CN2 profiler data, and on-sky phase diversity. We describe the fundamental assumptions and the mathematical models for each components of the residual phase structure function. The reconstructed PSF is compared with on-sky single star PSF. We emphasize the importance of access to a good telemetry and the fact that non-common path aberrations also affects PSF-R. The global, statistical quality of the reconstructed PSF demonstrates the validity of the method. The algorithm is now ready for AO science data reduction (see the companion overview paper, Ragland et al.1 - this conference).&lt;/p&gt;</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/3wq362xn</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Jolissaint, Laurent</name>
      </author>
      <author>
        <name>Ragland, Sam</name>
      </author>
      <author>
        <name>Wizinowich, Peter</name>
      </author>
    </item>
    <item>
      <title>SPHERE extreme AO system On-sky operation, final performance and future improvements</title>
      <link>https://escholarship.org/uc/item/29g816zb</link>
      <description>The SPHERE (Spectro-Polarimetric High-contrast Exoplanet Research) instrument aims at detecting extremely faint1sources (giant extrasolar planets) in the vicinity of bright stars . Such a challenging goal requires the use of a very-high-order performance Adaptive Optics [AO] system feeding the scientific instruments with a quasi-perfect flat wave front corrected from all the atmospheric turbulence and internal defects. This AO system, called SAXO (Sphere Ao for eXoplanet Observation) is the heart of the instrument, a heart beating 1200 time per second and providing unprecedented image quality for a large ground based telescope at optical/near infrared wavelength. We will present the latest results obtained on-sky, demonstrating its exceptional performance (in terms of correction quality, stability and robustness) and tremendous potentiality for exoplanet discovery.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/29g816zb</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Fusco, Thierry</name>
      </author>
      <author>
        <name>Sauvage, Jean-François</name>
      </author>
      <author>
        <name>Dohlen, Kjetil</name>
      </author>
      <author>
        <name>Mouillet, David</name>
      </author>
      <author>
        <name>Girard, Julien</name>
      </author>
      <author>
        <name>Kasper, Markus</name>
      </author>
      <author>
        <name>Petit, Cyril</name>
      </author>
      <author>
        <name>Beuzit, Jean-Luc</name>
      </author>
    </item>
    <item>
      <title>New Cophasing and AO strategies for an extremely large telescope dedicated to extremely high contrast: The Colossus Project</title>
      <link>https://escholarship.org/uc/item/23w5v4vv</link>
      <description>Detecting an exoplanetary life signal is extremely challenging with current technology because it requires a sensitive telescope and instrument that can measure the planet's reflected optical and infrared light, while distinguishing this from the star's scattered light and the terrestrial thermal noise background. This requires highly accurate adaptive optics, a coronagraph system, and a specially designed and aligned giant telescope. We present here new strategies for building such a telescope with large circular segments using adaptive optics correction independently for each of these segments prior to cophasing the segments. The foreseen cophasing technique uses focal plane images that allow piston measurements and correction between all the segments. In this context we propose to derive the segment phase error using the inverse approach knowing the segment positions and the single aperture Airy function.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/23w5v4vv</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Moretto, Gilles</name>
      </author>
      <author>
        <name>Kuhn, Jeff R.</name>
      </author>
      <author>
        <name>Langlois, Maud</name>
      </author>
      <author>
        <name>Tallon, Michel</name>
      </author>
      <author>
        <name>Thiebaut, Eric</name>
      </author>
      <author>
        <name>Berdyugina, Svetlana</name>
      </author>
      <author>
        <name>Halliday, David</name>
      </author>
    </item>
    <item>
      <title>Commissioning ShARCS: the Shane Adaptive optics infraRed Camera-Spectrograph for the Lick Observatory 3-m telescope</title>
      <link>https://escholarship.org/uc/item/1qh5b3v0</link>
      <description>We describe the design and first-light early science performance of the Shane Adaptive optics infraRed Camera- Spectrograph (ShARCS) on Lick Observatory’s 3-m Shane telescope. Designed to work with the new ShaneAO adaptive optics system, ShARCS is capable of high-efficiency, diffraction-limited imaging and low-dispersion grism spectroscopy in J, H, and K-bands. ShARCS uses a HAWAII-2RG infrared detector, giving high quantum efficiency (&amp;gt;80%) and Nyquist sampling the diffraction limit in all three wavelength bands. The ShARCS instrument is also equipped for linear polarimetry and is sensitive down to 650 nm to support future visible-light adaptive optics capability. We report on the early science data taken during commissioning.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/1qh5b3v0</guid>
      <pubDate>Tue, 19 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>McGurk, Rosalie</name>
      </author>
    </item>
    <item>
      <title>On-sky results of Raven, a MOAO science demonstrator at Subaru Telescope</title>
      <link>https://escholarship.org/uc/item/9xx3208w</link>
      <description>Raven is a Multi-Object Adaptive Optics science demonstrator which has been used on-sky at Subaru telescope from May 2014 to July 2015. Raven has been developed at the University of Victoria AO Lab, in partnership with NRC, NAOJ and Tohoku University. Raven includes three open loop WFSs, a central laser guide star WFS, and two science pick-off arms feeding light to the Subaru IRCS spectrograph. Raven supports different AO modes: SCAO, open-loop GLAO and MOAO. This paper gives an overview of the instrument design, compares the on-sky performance of the different AO modes and presents some of the science results achieved with MOAO.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/9xx3208w</guid>
      <pubDate>Mon, 18 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Lardiere, Olivier</name>
      </author>
      <author>
        <name>Dave, Andersen</name>
      </author>
      <author>
        <name>Bradley, Colin</name>
      </author>
      <author>
        <name>Oya, Shin</name>
      </author>
      <author>
        <name>Ono, Yoshito</name>
      </author>
      <author>
        <name>Gamroth, Darryl</name>
      </author>
      <author>
        <name>Correia, Carlos</name>
      </author>
      <author>
        <name>Lamb, Masen</name>
      </author>
    </item>
    <item>
      <title>Design and Development Status of MKID Integral Field Spectrographs for High Contrast Imaging</title>
      <link>https://escholarship.org/uc/item/217686nz</link>
      <description>We report on the design and development progress of two Microwave Kinetic Inductance Detector (MKID) integral field spectrographs (IFSs) for high-contrast astronomy applications. DARKNESS is a 10,000 pixel MKID IFS that will integrate with the coronagraphs at Palomar Observatory, as well as directly with the Palm- 3000 (P3K) extreme adaptive optics (AO) system. MEC is a 20,440 pixel MKID IFS that will integrate with the Subaru Coronagraphic Extreme AO (SCExAO) system at the Subaru Telescope. Both IFSs are optimized for 700 to 1400 nm bandpasses to provide low resolution spectroscopy across I and J bands. MKIDs are a promising technology for overcoming the current contrast ceiling in coronagraphic instruments imposed by atmospheric speckles that vary on 1-second timescales. These speckles vary too slowly to average out with long exposures, and too quickly to control in real time with conventional focal plane detectors or to subtract reliably with differential imaging. With these...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/217686nz</guid>
      <pubDate>Mon, 18 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Meeker, Seth</name>
      </author>
      <author>
        <name>Mazin, Benjamin</name>
      </author>
      <author>
        <name>Jensen-Clem, Rebecca</name>
      </author>
      <author>
        <name>Walter, Alex</name>
      </author>
      <author>
        <name>Szypryt, Paul</name>
      </author>
      <author>
        <name>Strader, Matthew</name>
      </author>
      <author>
        <name>Bockstiegel, Clint</name>
      </author>
    </item>
    <item>
      <title>Laser guide star adaptive optics at Lick Observatory</title>
      <link>https://escholarship.org/uc/item/20s3w2j6</link>
      <description>We present an overview of the adaptive optics system at the Shane telescope (ShaneAO) along with research and development efforts on the technology and algorithms for that will advance AO into wider application for astronomy. Diffraction-limited imaging and spectroscopy from ground based large aperture telescopes will open up the opportunity for unprecedented science advancement. The AO challenges we are targeting are correction down to visible science wavelengths, which demands high-order wavefront correction, and dim object viewing over the whole sky, which demands bright artificial laser beacons. We discuss our ongoing development of MEMS based AO correction, woofer-tweeter architecture, wind-predictive wavefront control algorithms and a guide star laser tuned for optical pumping of the sodium layer. We present the latest on-sky results from the new AO system and present status and experimental plans for the optical pumping guide star laser.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/20s3w2j6</guid>
      <pubDate>Mon, 18 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Gavel, Donald</name>
      </author>
      <author>
        <name>Dillon, Daren</name>
      </author>
      <author>
        <name>Kupke, Renate</name>
      </author>
      <author>
        <name>Rudy, Alex</name>
      </author>
    </item>
    <item>
      <title>The MAORY first-light adaptive optics module for E-ELT</title>
      <link>https://escholarship.org/uc/item/8xc125wz</link>
      <description>The MAORY adaptive optics module is part of the first light instrumentation suite for the E-ELT. The MAORY project phase B is going to start soon. This paper contains a system-level overview of the current instrument design.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/8xc125wz</guid>
      <pubDate>Fri, 15 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Diolaiti, Emiliano</name>
      </author>
      <author>
        <name>Agapito, Guido</name>
      </author>
      <author>
        <name>Antichi, Jacopo</name>
      </author>
      <author>
        <name>Arcidiacono, Carmelo</name>
      </author>
      <author>
        <name>Baruffolo, Andrea</name>
      </author>
      <author>
        <name>Bellazzini, Michele</name>
      </author>
      <author>
        <name>Bregoli, Giovanni</name>
      </author>
      <author>
        <name>Butler, Reginald Christopher</name>
      </author>
      <author>
        <name>Cascone, Enrico</name>
      </author>
      <author>
        <name>Ciliegi, Paolo</name>
      </author>
      <author>
        <name>Cortecchia, Fausto</name>
      </author>
      <author>
        <name>Cosentino, Giuseppe</name>
      </author>
      <author>
        <name>De Caprio, Vincenzo</name>
      </author>
      <author>
        <name>De Rosa, Adriano</name>
      </author>
      <author>
        <name>Di Rico, Gianluca</name>
      </author>
      <author>
        <name>Esposito, Simone</name>
      </author>
      <author>
        <name>Fantinel, Daniela</name>
      </author>
      <author>
        <name>Feautrier, Philippe</name>
      </author>
      <author>
        <name>Foppiani, Italo</name>
      </author>
      <author>
        <name>Giordano, Christophe</name>
      </author>
      <author>
        <name>Giro, Enrico</name>
      </author>
      <author>
        <name>Lombini, Matteo</name>
      </author>
      <author>
        <name>Morgante, Gianluca</name>
      </author>
      <author>
        <name>Patti, Mauro</name>
      </author>
      <author>
        <name>Ragazzoni, Roberto</name>
      </author>
      <author>
        <name>Riccardi, Armando</name>
      </author>
      <author>
        <name>Ricciardi, Sara</name>
      </author>
      <author>
        <name>Riva, Marco</name>
      </author>
      <author>
        <name>Salasnich, Bernardo</name>
      </author>
      <author>
        <name>Schreiber, Laura</name>
      </author>
      <author>
        <name>Spanò, Paolo</name>
      </author>
      <author>
        <name>Zerbi, Filippo Maria</name>
      </author>
      <author>
        <name>Casali, Mark</name>
      </author>
      <author>
        <name>Kerber, Florian</name>
      </author>
      <author>
        <name>Marchetti, Enrico</name>
      </author>
      <author>
        <name>Ramsay, Suzanne</name>
      </author>
    </item>
    <item>
      <title>GeMS, the path toward AO facility</title>
      <link>https://escholarship.org/uc/item/7t06254q</link>
      <description>&lt;p&gt;GeMS, the Gemini South MCAO System, has now been in regular operation since mid-2013 with the imager instrument GSAOI. We review the performance obtained during this past year as well as some of its current limitations. While in operation, GeMS is still evolving to push them back and is currently in the path of receiving two major upgrades which will allow new exciting science cases: a new natural guide star wavefront sensor called NGS2 and a replacement of the current 50W laser. We are also actively moving along the path of further deeper integration with the future AO-fed instruments, we present our first preliminary results of astrometric and spectrometric calibrations with diverse Gemini instruments using an internal calibration source. We finally report our efforts to make GeMS a more robust instrument with the integration of a vibration rejection feature and a more user-friendly AO system as well with advanced gain optimization automatization. &lt;/p&gt;</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/7t06254q</guid>
      <pubDate>Fri, 15 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Garrel, Vincent</name>
      </author>
      <author>
        <name>Sivo, Gaetano</name>
      </author>
      <author>
        <name>Marin, Eduardo</name>
      </author>
      <author>
        <name>Trujillo, Chadwick</name>
      </author>
      <author>
        <name>Carrasco Damele, Rodrigo</name>
      </author>
      <author>
        <name>Neichel, Benoit</name>
      </author>
      <author>
        <name>Van Dam, Marcos</name>
      </author>
      <author>
        <name>Ammons, Mark</name>
      </author>
      <author>
        <name>Rigaut, Francois</name>
      </author>
      <author>
        <name>Diaz, Ruben</name>
      </author>
      <author>
        <name>Schirmer, Mischa</name>
      </author>
      <author>
        <name>Gimeno, German</name>
      </author>
      <author>
        <name>Hibon, Pascale</name>
      </author>
      <author>
        <name>Leboulleux, Lucie</name>
      </author>
      <author>
        <name>Montes, Vanessa</name>
      </author>
      <author>
        <name>Lazo, Manuel</name>
      </author>
      <author>
        <name>Rambold, William</name>
      </author>
      <author>
        <name>Gigoux, Pedro</name>
      </author>
      <author>
        <name>Galvez, Ramon</name>
      </author>
      <author>
        <name>Moreno, Cristian</name>
      </author>
      <author>
        <name>Araujo-Hauck, Constanza</name>
      </author>
      <author>
        <name>Vucina Parga, Tomislav</name>
      </author>
      <author>
        <name>Donahue, Jeff</name>
      </author>
      <author>
        <name>Gausachs, Gaston</name>
      </author>
      <author>
        <name>Lopez, Ariel</name>
      </author>
    </item>
    <item>
      <title>SHARK-NIR Channel: a high contrast imager with coronagraphic capabilities for the Large Binocular Telescope</title>
      <link>https://escholarship.org/uc/item/7fr068zd</link>
      <description>A new coronagraphic instrument for the Large Binocular Telescope (LBT) has successfully passed the conceptual design phase. SHARK-NIR channel will be installed in one arm of the Large Binocular Telescope and it is designed to use different coronagraphic techniques, both to match as much as possible the different requirements of the different science cases and to explore the capabilities of such techniques for the next-generation of ELTs. By exploiting the combination with SHARK-VIS channel mounted at the other LBT arm, the instrument will offer simultaneous coronagraphic observations at different wavelengths, characterized by high contrast, even for relatively faint targets. This will be achievable thanks to the very efficient Adaptive Optics (AO) systems already operating at LBT (First Light AO, FLAO). Furthermore, the latter will be soon upgraded with new detectors, promising even better performance in terms of limiting magnitude. In this paper we present the status of the SHARK-NIR...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/7fr068zd</guid>
      <pubDate>Fri, 15 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Farinato, Jacopo</name>
      </author>
      <author>
        <name>Baffa, Carlo</name>
      </author>
      <author>
        <name>Baruffolo, Andrea</name>
      </author>
      <author>
        <name>Bergomi, Maria</name>
      </author>
      <author>
        <name>Carbonaro, Luca</name>
      </author>
      <author>
        <name>Carolo, Elena</name>
      </author>
      <author>
        <name>Carlotti, Alexis</name>
      </author>
      <author>
        <name>Centrone, Mauro</name>
      </author>
      <author>
        <name>Close, Laird</name>
      </author>
      <author>
        <name>De Pascale, Marco</name>
      </author>
      <author>
        <name>Dima, Marco</name>
      </author>
      <author>
        <name>Esposito, Simone</name>
      </author>
      <author>
        <name>Fantinel, Daniela</name>
      </author>
      <author>
        <name>Farisato, Giancarlo</name>
      </author>
      <author>
        <name>Gaessler, Wolfgang</name>
      </author>
      <author>
        <name>Giallongo, Emanuele</name>
      </author>
      <author>
        <name>Greggio, Davide</name>
      </author>
      <author>
        <name>Guyon, Olivier</name>
      </author>
      <author>
        <name>Hinz, Philip</name>
      </author>
      <author>
        <name>Lisi, Franco</name>
      </author>
      <author>
        <name>Magrin, Demetrio</name>
      </author>
      <author>
        <name>Marafatto, Luca</name>
      </author>
      <author>
        <name>Pedichini, Fernando</name>
      </author>
      <author>
        <name>Pinna, Enrico</name>
      </author>
      <author>
        <name>Puglisi, Alfio</name>
      </author>
      <author>
        <name>Ragazzoni, Roberto</name>
      </author>
      <author>
        <name>Salasnich, Bernardo</name>
      </author>
      <author>
        <name>Stangalini, Marco</name>
      </author>
      <author>
        <name>Vassallo, Daniele</name>
      </author>
      <author>
        <name>Verinaud, Christophe</name>
      </author>
      <author>
        <name>Viotto, Valentina</name>
      </author>
    </item>
    <item>
      <title>Optimizing use of multiple stars for near-infrared tip-tilt compensation at the W. M. Keck Observatory</title>
      <link>https://escholarship.org/uc/item/7f60s89n</link>
      <description>&lt;p&gt;The implementation of a near-infrared tip-tilt sensor in the Keck I adaptive optics (AO) system is the first of its kind, and represents a substantial step forward in AO technology. Enhanced-TRICK (Tilt Removal with IR Compensation at Keck) is a project built off this implementation which will further improve performance and versatility. Currently the system is capable of using a single star for measuring image motion, but in the off-axis case this may cause elongation in the science image due to tilt anisoplanatism. The near-infrared tip-tilt sensor (NIRTTS) has been designed with the capability of using up to three stars from around the field to correct for elongation. In order for the science object correction to be optimized, the measurements from each star must be weighted based on magnitude and separation from the science object. When weighted optimally the tip-tilt error at the science object will be a minimum. The process for assigning weights is described, and results...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/7f60s89n</guid>
      <pubDate>Fri, 15 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Samulski, Camille</name>
      </author>
      <author>
        <name>Rampy, Rachel</name>
      </author>
      <author>
        <name>Femenia, Bruno</name>
      </author>
      <author>
        <name>Wizinowich, Peter</name>
      </author>
    </item>
    <item>
      <title>Tip-tilt modelling and control for GeMS: a performance comparison of identification techniques</title>
      <link>https://escholarship.org/uc/item/6gk7874j</link>
      <description>Perturbation modelling and vibration compensation are key issues to reach better performance in adaptive optics systems for VLTs and future ELTs. In this context, an LQG controller is to be implemented for the tip-tilt loop of the multi-conjugate adaptive optics instrument GeMS. The performance of several models, associated with their identification techniques are considered for tip-tilt disturbance.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/6gk7874j</guid>
      <pubDate>Fri, 15 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Juvenal, Rémy</name>
      </author>
      <author>
        <name>Kulcsar, Caroline</name>
      </author>
      <author>
        <name>Raynaud, Henri-François</name>
      </author>
      <author>
        <name>Conan, Jean-Marc</name>
      </author>
      <author>
        <name>Petit, Cyril</name>
      </author>
      <author>
        <name>Leboulleux, Lucie</name>
      </author>
      <author>
        <name>Sivo, Gaetano</name>
      </author>
      <author>
        <name>Garrel, Vincent</name>
      </author>
    </item>
    <item>
      <title>Preliminary design of the MICADO calibration unit</title>
      <link>https://escholarship.org/uc/item/6cr4288r</link>
      <description>MICADO is the Multi-AO Imaging Camera for Deep Observations, which aims to be the first light instrument of E-ELT. Thanks to its robust design with fixed mirrors and a cryogenic environment, MICADO will provide unprecedented astrometric capabilities and image stability in the range 0.8-2.4 μm. The operation of the instrument coupled with a SCAO unit provides diffraction-limited images over a field of view of 27” that will enlarge to 53” after the integration of the Multi-conjugate Adaptive Optics RelaY, MAORY. This work presents some preliminary possible concepts for the MICADO calibration unit, currently under development at MPIA. This subsystem shall provide standard flat-fielding and spectral calibration plus an astrometric calibration performed with an internal calibration mask to measure and compensate instrument distortions, discontinuities between the detectors and telescope instabilities. The goal of the instrument is to deliver an astrometric accuracy of ~50 μas over...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/6cr4288r</guid>
      <pubDate>Fri, 15 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Rodeghiero, Gabriele</name>
      </author>
      <author>
        <name>Pott, Jörg-Uwe</name>
      </author>
      <author>
        <name>Müller, Friedrich</name>
      </author>
    </item>
    <item>
      <title>Retrieving tip-tilt information from Tomographic Laser Guide Star Adaptive Optics Systems</title>
      <link>https://escholarship.org/uc/item/3gp3k4kg</link>
      <description>Current Laser Guide Star (LGS) Adaptive Optics (AO) systems disregard all tip-tilt wavefront information received from the LGS Wavefront Sensors (WFS), as it is considered irretrievably entangled with the up-link turbulence that the laser encounters as it passes through the atmosphere to form a guide star. Consequently, they must still observe a Natural Guide Star (NGS) in order to correct for tip-tilt aberrations.A method has recently been presented that use the tomographic capabilities of centre-launched, multi-LGS AO systems to predict the LGS uplink turbulence and hence allow correction with a reduced requirement on the NGS, or potentially no NGS requirement at all for some scientific applications. This method is summarised here, and its limitations discussed. Due to the increased separation of the laser beams at higher altitude, the method is more effective for correction of tip-tilt from high altitude turbulence, with performance approaching that of tomographic LGS AO with...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/3gp3k4kg</guid>
      <pubDate>Fri, 15 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Reeves, Andrew</name>
      </author>
      <author>
        <name>Myers, Richard</name>
      </author>
      <author>
        <name>Morris, Tim</name>
      </author>
      <author>
        <name>Osborn, James</name>
      </author>
      <author>
        <name>Bharmal, Nazim Ali</name>
      </author>
    </item>
    <item>
      <title>First Results of the Ground Layer Adaptive Optics System ARGOS</title>
      <link>https://escholarship.org/uc/item/2mq8n4d4</link>
      <description>We present the first results of Argos, the multiple laser guide star and wavefront sensing facility for the Large Binocular Telescope. This system will deliver an improvement by a factor of two in FWHM over the 4′×4′ field of view of both Luci instruments. Luci 1 and Luci 2 are two near-infrared wide field imagers and multi-object spectrographs which capability and efficiency will be boosted by the increased resolution and encircled energy.The first on-sky ground-layer adaptive optics (GLAO) loop closure with Argos has been achieved in Fall 2014 on the right eye of the telescope. Stable operations in closed-loop have been demonstrated in May 2015 with hour-long integration and repeated good performances over several nights. Since then, the commissioning has been proceeding with the installation of the left system and the beginning of the left on-sky operations in this Fall 2015. The next achievements will be to strengthen the operational aspects and to perform science demonstration...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/2mq8n4d4</guid>
      <pubDate>Fri, 15 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Orban de Xivry, Gilles</name>
      </author>
      <author>
        <name>Bonaglia, Marco</name>
      </author>
      <author>
        <name>Borelli, Jose</name>
      </author>
      <author>
        <name>Busoni, Lorenzo</name>
      </author>
      <author>
        <name>Deysenroth, Matthias</name>
      </author>
      <author>
        <name>Esposito, Simone</name>
      </author>
      <author>
        <name>Gaessler, Wolfgang</name>
      </author>
      <author>
        <name>Kulas, Martin</name>
      </author>
      <author>
        <name>Mazzoni, Tommaso</name>
      </author>
      <author>
        <name>Peter, Diethard</name>
      </author>
      <author>
        <name>Rabien, Sebastian</name>
      </author>
      <author>
        <name>Rahmer, Gustavo</name>
      </author>
      <author>
        <name>Ziegleder, Julian</name>
      </author>
      <author>
        <name>Sivitilli, Alexander</name>
      </author>
      <author>
        <name>Storm, Jesper</name>
      </author>
      <author>
        <name>Gemperlein, Hans</name>
      </author>
      <author>
        <name>Lefebvre, Michael</name>
      </author>
      <author>
        <name>Puglisi, Alfio</name>
      </author>
      <author>
        <name>Raab, Walfried</name>
      </author>
    </item>
    <item>
      <title>Aligning the LINC-NIRVANA Natural Guide Stars MCAO system</title>
      <link>https://escholarship.org/uc/item/2cr972kt</link>
      <description>LINC-NIRVANA (LN) is an instrument built to be a Fizeau interferometric imager for the Large Binocular Telescope that will achieve ELT-like spatial resolution. Of course achieving this outstanding resolution requires a very complex instrument, assuring the delivery of plane wavefronts, parallel input beams, homoteticity and zero Optical Path Difference. LN will be one of the most complex ground-based instruments ever built, consisting of a Multi-Conjugate Adaptive Optics (MCAO) system, a fringe tracker, a beam combiner and a Near-InfraRed science camera, for a total of more than 250 indivudual lenses and mirrors.The MCAO sub-unit itself is the state of the art in the sector of wide field adaptive optics. It consists of 4 Wavefront Sensors (WFSs), two for each arm of the telescope, to sense the turbulence at the ground layer and at 7.1 km above the telescope. They operate in a layer oriented, Multiple Field of View mode, using up to 12 Natural Guide Stars (NGSs) for the ground...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/2cr972kt</guid>
      <pubDate>Fri, 15 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Marafatto, Luca</name>
      </author>
      <author>
        <name>Baumeister, Harald</name>
      </author>
      <author>
        <name>Bertram, Thomas</name>
      </author>
      <author>
        <name>Berwein, Jurgen</name>
      </author>
      <author>
        <name>Briegel, Florian</name>
      </author>
      <author>
        <name>Bizenberger, Peter</name>
      </author>
      <author>
        <name>Herbst, Tom</name>
      </author>
      <author>
        <name>Hofferbert, Ralph</name>
      </author>
      <author>
        <name>Moreno-Ventas, Javier</name>
      </author>
      <author>
        <name>Kittmann, Frank</name>
      </author>
      <author>
        <name>Kuerster, Martin</name>
      </author>
      <author>
        <name>Bergomi, Maria</name>
      </author>
      <author>
        <name>Dima, Marco</name>
      </author>
      <author>
        <name>Farinato, Jacopo</name>
      </author>
      <author>
        <name>Ragazzoni, Roberto</name>
      </author>
      <author>
        <name>Viotto, Valentina</name>
      </author>
    </item>
    <item>
      <title>Adaptive Optics Point Spread Function Reconstruction at W. M. Keck Observatory in Laser &amp;amp; Natural Guide Star Modes : Final Developments</title>
      <link>https://escholarship.org/uc/item/22p8g6rr</link>
      <description>We present the final development of our point spread function reconstruction algorithm for the Keck-II telescope adaptive optics system, in laser and natural guide star modes. The method makes use of AO loop teleme- try, nearby CN2 profiler data, and on-sky phase diversity. We describe the fundamental assumptions and the mathematical models for each components of the residual phase structure function. The reconstructed PSF is compared with on-sky single star PSF. We emphasize the importance of access to a good telemetry and the fact that non-common path aberrations also affects PSF-R. The global, statistical quality of the reconstructed PSF demonstrates the validity of the method. The algorithm is now ready for AO science data reduction (see the companion overview paper, Ragland et al.1 - this conference).</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/22p8g6rr</guid>
      <pubDate>Fri, 15 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Jolissaint, Laurent</name>
      </author>
      <author>
        <name>Ragland, Sam</name>
      </author>
      <author>
        <name>Wizinowich, Peter</name>
      </author>
    </item>
    <item>
      <title>Commissioning of ARGOS at LBT: adaptive optics procedures</title>
      <link>https://escholarship.org/uc/item/0bz8t4mv</link>
      <description>ARGOS is the laser guide star facility of the Large Binocular Telescope (LBT). It implements a Rayleigh Laser Guide Star system that provides Ground Layer Adaptive Optics (GLAO) correction for the LUCIs, the 2 wide- field near-infrared imagers and multi-object spectrographs installed on the 2 eyes of LBT. In this paper we describe how LBT’s adaptive optics operations have been tailored to ARGOS’s use cases based on the experience developed during over the ARGOS commissioning. We focus on all the aspects that are influenced by the use of the Laser Guide Stars, from collimation to acquisition and LGS guiding and we details the sequences to start, pause and resume the adaptive correction.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/0bz8t4mv</guid>
      <pubDate>Fri, 15 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Busoni, Lorenzo</name>
      </author>
      <author>
        <name>Bonaglia, Marco</name>
      </author>
      <author>
        <name>Borelli, Jose</name>
      </author>
      <author>
        <name>Deysenroth, Matthias</name>
      </author>
      <author>
        <name>Esposito, Simone</name>
      </author>
      <author>
        <name>Gaessler, Wolfgang</name>
      </author>
      <author>
        <name>Kulas, Martin</name>
      </author>
      <author>
        <name>Mazzoni, Tommaso</name>
      </author>
      <author>
        <name>Orban de Xivry, Gilles</name>
      </author>
      <author>
        <name>Peter, Diethard</name>
      </author>
      <author>
        <name>Rabien, Sebastian</name>
      </author>
      <author>
        <name>Rahmer, Gustavo</name>
      </author>
      <author>
        <name>Ziegleder, Julian</name>
      </author>
    </item>
    <item>
      <title>Processing of external SLODAR turbulence profile measurements to support adaptive optics performance predictions</title>
      <link>https://escholarship.org/uc/item/9052b62d</link>
      <description>The Adaptive Optics Facility (AOF) at the Very Large Telescope (VLT) will have two ground layeradaptive optics (GLAO) modes of operation. To make the best use of these modes, informationabout the ground layer turbulence prole up to 500 m will be important. External turbulenceproling support will be provided by a robotic slope detection and ranging (SLODAR) instrumentwith 8 resolution elements and a maximum sensing altitude of 100-500 m. When proling at thehigher end of this range the surface layer of turbulence is not resolved so the fraction observed bythe Unit Telescopes (UTs) is ambiguous. Here we present a method of estimating the surface layercontribution seen by the UTs by assuming an exponential decay model for the surface layer. Older,higher resolution, proles from the prototype surface layer SLODAR instrument (from 2011-2012)have been used to determine the most appropriate scale height for the model. By incorporating themodel, a better estimate of the integrated turbulence...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/9052b62d</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Butterley, Tim</name>
      </author>
      <author>
        <name>Wilson, Richard</name>
      </author>
      <author>
        <name>Sarazin, Marc</name>
      </author>
    </item>
    <item>
      <title>Modeling the pyramidal sensor by a ZEMAXTM user defined surface.</title>
      <link>https://escholarship.org/uc/item/8wj5p4cc</link>
      <description>After 20 years of wavefront sensors based on pyramid (PWFS), there are no straightforward ways to model such device in standard sequential ray-tracing software: modeling strategies tend to be oriented to the needs of the single user only and, in general, are unsatisfactory due to lack of flexibility. To overcome this problem, we have exploited the possibility of ZEMAXTM – one of the ray- tracing software mostly in use nowadays – to develop a user defined surface (UDS), whose properties are described in a dynamic link library (DLL) written in C language. The pyramid UDS approach greatly improves the versatility during the design and simplifies both quality and tolerance analysis. In order to prove the potentiality of our UDS-DLL surface, referred as PAM2R, we reproduced the optical layout of two PWFS systems already installed at LBT: the single-conjugate system FLAO, and the ground-layer system GWS of LINC-NIRVANA. In this proceeding we will highlight the main characteristics of...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/8wj5p4cc</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Antichi, Jacopo</name>
      </author>
      <author>
        <name>Munari, Matteo</name>
      </author>
      <author>
        <name>Magrin, Demetrio</name>
      </author>
      <author>
        <name>Riccardi, Armando</name>
      </author>
    </item>
    <item>
      <title>Progress report on the ESO 4LGSF</title>
      <link>https://escholarship.org/uc/item/8nb0n5jf</link>
      <description>The Four Laser Guide Star Facility (4LGSF) is part of the ESO Adaptive Optics Facility (AOF), in which one of the VLT unit telescopes, UT4, is transformed in an adaptive telescope - equipped with a deformable secondary mirror, two adaptive optics systems at the Nasmyth foci and four laser guide star modular units. In this poster we present the key results of the acceptance tests performed on the 4LGSF in Europe and first commissioning results obtained with the Laser Guide Star Unit #1 in stand-alone operation.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/8nb0n5jf</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Hackenberg, Wolfgang</name>
      </author>
      <author>
        <name>Bonaccini Calia, Domenico</name>
      </author>
      <author>
        <name>Guidolin, Ivan</name>
      </author>
      <author>
        <name>Pfrommer, Thomas</name>
      </author>
      <author>
        <name>Kern, Lothar</name>
      </author>
      <author>
        <name>Dupuy, Christophe</name>
      </author>
      <author>
        <name>Lewis, Steffan</name>
      </author>
      <author>
        <name>Huber, Stephan</name>
      </author>
      <author>
        <name>Guzman, Ronald</name>
      </author>
      <author>
        <name>Comin, Mauro</name>
      </author>
      <author>
        <name>Popovic, Dan</name>
      </author>
      <author>
        <name>McLay, Stewart</name>
      </author>
      <author>
        <name>Holzlohner, Ronald</name>
      </author>
    </item>
    <item>
      <title>XAO at LBT: current performances in the visible and upcoming upgrade</title>
      <link>https://escholarship.org/uc/item/8d79v3t0</link>
      <description>The Extreme Adaptive Optics is one of the new frontiers for astronomical AO and LBT is hosting one of the few XAO systems available on 8m class telescopes. With the 4Runner, a fast visible camera, we measured the AO performances at visible wavelengths. We were able to correct up to 500 modes at 1kHz of framerate, reaching Strehl ratios of about 40% at 630nm of wavelength. We will show the results obtained in daytime with the calibration source and on-sky using natural guidestars. These performances have been obtained at the LBTI-DX focus, one of the 4 LBT focal stations equipped with a SCAO system. All these 4 systems will be upgraded in the framework of the SOUL project. The wavefront sensor detectors will be substituted with low readout noise ones, the adaptive secondary firmware and the AO control both improved. We will briefly describe here SOUL and its performances as estimated via numerical simulations.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/8d79v3t0</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Pinna, Enrico</name>
      </author>
      <author>
        <name>Pedichini, Fernando</name>
      </author>
      <author>
        <name>Esposito, Simone</name>
      </author>
      <author>
        <name>Centrone, Mauro</name>
      </author>
      <author>
        <name>Puglisi, Alfio</name>
      </author>
      <author>
        <name>Farinato, Jacopo</name>
      </author>
      <author>
        <name>Carbonaro, Luca</name>
      </author>
      <author>
        <name>Agapito, Guido</name>
      </author>
      <author>
        <name>Stangalini, Marco</name>
      </author>
      <author>
        <name>Riccardi, Armando</name>
      </author>
      <author>
        <name>Xompero, Marco</name>
      </author>
      <author>
        <name>Briguglio, Runa</name>
      </author>
      <author>
        <name>Hinz, Philip</name>
      </author>
      <author>
        <name>Bailey, Vanessa</name>
      </author>
      <author>
        <name>Montoya, Manny</name>
      </author>
    </item>
    <item>
      <title>The GMT Dynamic Optical Simulation</title>
      <link>https://escholarship.org/uc/item/87f6s2zv</link>
      <description>The Giant Magellan Telescope (GMT) is a gregorian 25.5-meter diameter primary mirror (M1) made of 7 8.4-meter diameter circular aspheric segments. The secondary mirror (M2) is a 1/8th down-scale model of M1 madeof 7 1- meter diameter segments. Each segments has positionners to adjust its 6 rigid body motions. The gureof M1 segment is controlled with 44 bending modes and M2 segments are deformed using 672 actuators. Inthe active and adaptive operation modes of the GMT, around a dozen wavefront sensors (WFS) are selectivelyused to monitor the optical aberrations building-up into the telescope. A dedicated control system feeds backthe WFS measurements to the mirrors actuators to deliver image quality optimized for the eld of view of eachscientic instrument. This paper describes the GMT Dynamic Optical Simulation (DOS) tool. DOS integratesthe optical and mechanical model of the telescope together with the control system. DOS is a cloud-basedoptical propagation software package with...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/87f6s2zv</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Conan, Rod</name>
      </author>
      <author>
        <name>Bouchez, Antonin</name>
      </author>
      <author>
        <name>Quiros-Pacheco, Fernando</name>
      </author>
      <author>
        <name>McLeod, Brian</name>
      </author>
    </item>
    <item>
      <title>Miniaturized Shack-Hartmann Wavefront-Sensors for ELTs</title>
      <link>https://escholarship.org/uc/item/7t52h1r1</link>
      <description>The miniaturization of wavefront sensors overcomes some of the potential barriers faced by ELTs in implementing large- scale multi-object adaptive optics over large focal surfaces. The Australian Astronomical Observatory is prototyping a compact and lightweight Shack-Hartmann wavefront-sensor designed to be positioned by their Starbug parallel fibre positioning robots. Starbugs perform the critical positioning of optical fibers for the MANIFEST instrument for the GMT. Each wavefront sensor uses a set of polymer bundles to relay the image produced by a microlens array near to the focal plane to a re-imaging module. This allows multiple wavefront sensors to be multiplexed to a single low-noise camera for cost efficiencies per wavefront sensor. The ability to have a large number of wavefronts sensors are likely increase the scientific impact of future ELTs. We illustrate our miniature wavefront sensor concept with a potential design for the GMT.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/7t52h1r1</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Goodwin, Michael</name>
      </author>
      <author>
        <name>Zheng, Jessica</name>
      </author>
      <author>
        <name>Lawrence, Jon</name>
      </author>
      <author>
        <name>Richards, Sam</name>
      </author>
      <author>
        <name>Leon-Saval, Sergio</name>
      </author>
    </item>
    <item>
      <title>Performance assessment for the linear control of adaptive optics systems: noise propagation and temporal errors</title>
      <link>https://escholarship.org/uc/item/6r38q9vb</link>
      <description>We propose a detailed study of the temporal and noise propagation errors entering the error budget of Single Conjugate Adaptive Optics (SCAO) systems. A transfer-function oriented method is developed for the compu- tation of these errors, in a general linear control context. We apply this formalism to performance comparison between Linear Quadratic Gaussian (LQG) and Integral action controllers. Simulation results are presented, corresponding to a typical SCAO system, in order to validate some approximations on the perturbation power spectral density. We then apply the formalism to evaluate the tip-tilt error budget on GeMS.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/6r38q9vb</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Juvenal, Rémy</name>
      </author>
      <author>
        <name>Kulcsar, Caroline</name>
      </author>
      <author>
        <name>Raynaud, Henri-François</name>
      </author>
      <author>
        <name>Conan, Jean-Marc</name>
      </author>
      <author>
        <name>Sivo, Gaetano</name>
      </author>
    </item>
    <item>
      <title>Development of an ELT XAO testbed using a self referenced Mach-Zehnder wavefront sensor</title>
      <link>https://escholarship.org/uc/item/6h92z4q4</link>
      <description>Extreme adaptive optics (XAO) has severe difficulties meeting the high speed (&amp;gt;1kHz), accuracy and photon efficiency requirements for future extremely large telescopes. An innovative high order adaptive optics system using a self-referenced Mach-Zehnder wavefront sensor (MZWFS) allows counteracting these limitations. In addition to its very high accuracy, this WFS is the most robust alternative to segments gaps and telescope spiders which can result in strong wavefront artifacts. In particular in XAO systems when the size of these gaps in the wavefront measurement is comparable to the sub aperture size, loss in performance can be very high. The MZWFS estimates the wavefront phase by measuring intensity differences between two outputs, with a λ/4 path length difference between its two legs, but is limited in dynamic range. During the past few years, such an XAO system has been studied by our team in the framework of 8-meter class telescopes. In this paper, we report on our latest...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/6h92z4q4</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Delacroix, Christian</name>
      </author>
      <author>
        <name>Loupias, Magali</name>
      </author>
      <author>
        <name>Langlois, Maud</name>
      </author>
      <author>
        <name>Tallon, Michel</name>
      </author>
      <author>
        <name>Thiébaut, Eric</name>
      </author>
    </item>
    <item>
      <title>Durham AO Real-time Controller (DARC) running on Graphics Processing Units (GPUs)</title>
      <link>https://escholarship.org/uc/item/6809n74d</link>
      <description>The requirements on the real-time control systems for ELT instruments strongly encourage an investigation of newly emerging hardware and an assessment of its suitability for the job. We have implemented the full AO data processing pipeline on Graphics Processing Units (GPUs), within the framework of Durham AO Real-time Controller (DARC). The pixel data are copied from the CPU memory to the GPU memory. On the GPU, the data are processed and the DM commands are copied back to the CPU. For a system of 80x80 subapertures, the highest rate achieved on a single GPU is 550 frames per second. When running on two or more GPUs, the kernel launching time limits the increase in frame rate. We have also implemented the correlation centroiding algorithm, which - when used - reduces the frame rate by about a factor of two.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/6809n74d</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Bitenc, Urban</name>
      </author>
      <author>
        <name>Basden, Alastair</name>
      </author>
      <author>
        <name>Dipper, Nigel</name>
      </author>
      <author>
        <name>Myers, Richard</name>
      </author>
    </item>
    <item>
      <title>Self-Coherent Camera as a focal plane phasing sensor - Overview and early comparison with the Zernike Phase Contrast Sensor</title>
      <link>https://escholarship.org/uc/item/5vv5p369</link>
      <description>In order to achieve the high performance required for the astronomical science programs with coming Extremely Large Telescopes (ELTs), the errors due to segment misalignment must be reduced to tens of nm. Therefore the development of new co-phasing techniques is of critical importance for ground-based telescopes, and to a large extent for future space-based missions. We propose a new co-phasing method directly exploiting the scientific image delivered by the Self-Coherent Camera (SCC) by adequately combining segment misalignment estimators (piston and tip/tilt) and image processing. The Self-Coherent Camera Phasing Sensor (SCC-PS) is shown to be capable of estimating accurately and simultaneously piston and tip/tilt misalignments and to correct them in close-loop operation in a few iterations. By contrast to several phasing sensor concepts the SCC-PS does not require any a priori on the signal at the segment boundaries, or a dedicated optical path. The SCC-PS is a non-invasive...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/5vv5p369</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Janin-Potiron, Pierre</name>
      </author>
      <author>
        <name>Martinez, Patrice</name>
      </author>
      <author>
        <name>Baudoz, Pierre</name>
      </author>
      <author>
        <name>Carbillet, Marcel</name>
      </author>
    </item>
    <item>
      <title>A Fresnel propagation analysis for SPEED (Segmented Pupil Experiment for Exoplanet Detection)</title>
      <link>https://escholarship.org/uc/item/4s5364qp</link>
      <description>Direct detection and characterization of exoplanets is a major scientific driver of the next decade. Direct imaging requires challenging techniques to observe faint companions around bright stars. The development of future large telescopes will increase the capability to directly image and characterize exoplanets thanks to their high resolution and photon collecting power. The E-ELT will be composed of a segmented ~40 m-diameter primary mirror. High contrast imaging techniques for E-ELT will thus need to deal with amplitude errors due to segmentation (pupil discontinuities between the segments). A promising technique is the wavefront shaping. It consists in the use of deformable(s) mirror(s) to cancel the intensity inside the focal plane region. Algorithm improvements and laboratory demonstrations have been developed since the last 20 years. The use of 2 deformable mirrors (DM) in non-conjugated planes will allow correcting not only for phase aberrations but also for the amplitude...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/4s5364qp</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Beaulieu, Mathilde</name>
      </author>
      <author>
        <name>Abe, Lyu</name>
      </author>
      <author>
        <name>Martinez, Patrice</name>
      </author>
      <author>
        <name>Gouvret, Carole</name>
      </author>
      <author>
        <name>Martinache, Frantz</name>
      </author>
      <author>
        <name>Preis, Oliver</name>
      </author>
      <author>
        <name>Dejonghe, Julien</name>
      </author>
      <author>
        <name>Vakili, Farrokh</name>
      </author>
    </item>
    <item>
      <title>Wavefront control simulations for the Giant Magellan Telescope: Field-dependent segment piston control</title>
      <link>https://escholarship.org/uc/item/4q40v3ft</link>
      <description>We present in this paper preliminary simulation results aimed at validating the GMT piston control strategy. Wewill in particular consider an observing mode in which an Adaptive Optics (AO) system is providing fast on-axisWF correction with the Adaptive Secondary Mirror (ASM), while the phasing system using multiple SegmentPiston Sensors (SPS) makes sure that the seven GMT segments remain phased. Simulations have been performedwith the Dynamic Optical Simulation (DOS) tool developed at the GMT Project Oce, which integrates theoptical and mechanical models of GMT. DOS fast ray-tracing capabilities allows us to properly simulate theeect of eld-dependent aberrations, and in particular, the so-called Field Dependent Segment Piston (FDSP)mode arising when a segment tilt on M1 is compensated on-axis by a segment tilt on M2. We will show thatwhen using an asterism of SPS, our scheme can properly control both segment piston and the FDSP mode.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/4q40v3ft</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Quiros-Pacheco, Fernando</name>
      </author>
      <author>
        <name>Conan, Rod</name>
      </author>
      <author>
        <name>McLeod, Brian</name>
      </author>
      <author>
        <name>Irarrazaval, Ben</name>
      </author>
      <author>
        <name>Bouchez, Antonin</name>
      </author>
    </item>
    <item>
      <title>Analysis of GeMS tip-tilt on-sky data: LQG implementation for vibration rejections</title>
      <link>https://escholarship.org/uc/item/4h03k92b</link>
      <description>Adaptive Optics (AO) systems aim at detecting and correcting for optical distortions induced by atmospheric turbulences on ground based telescopes astronomical images. They are also extremely sensitive to extraneous sources of perturbations such as vibrations, which degrade their performance. A new well defined vibration at 37Hz has been detected in January 2015 and is still currently affecting the Gemini South telescope secondary mirror. We show how its existence limits the performance of the operational systems at Gemini South: The Gemini Planet Imager (GPI) and the Gemini Multi-Conjugated AO system (GeMS). We further focus on how these vibrations are affecting GeMS performance and propose to implement the Tip-Tilt control strategy first tested on CANARY and routinely used on SPHERE. It combines identification of a sum of auto-regressive models of order 2 with a Linear Quadratic Gaussian (LQG) control. LQG is now routinely used for Tip-Tilt and focus control for GPI and has...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/4h03k92b</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Leboulleux, Lucie</name>
      </author>
      <author>
        <name>Sivo, Gaetano</name>
      </author>
      <author>
        <name>Juvenal, Rémy</name>
      </author>
      <author>
        <name>Kulcsár, Caroline</name>
      </author>
      <author>
        <name>Garrel, Vincent</name>
      </author>
      <author>
        <name>Conan, Jean-Marc</name>
      </author>
      <author>
        <name>Raynaud, Henri-François</name>
      </author>
      <author>
        <name>Petit, Cyril</name>
      </author>
      <author>
        <name>Rambold, William</name>
      </author>
      <author>
        <name>Marin, Eduardo</name>
      </author>
      <author>
        <name>Montes, Vanessa</name>
      </author>
      <author>
        <name>Trujillo, Chadwick</name>
      </author>
    </item>
    <item>
      <title>Implementation of SLODAR atmospheric turbulence profiling to the ARGOS system</title>
      <link>https://escholarship.org/uc/item/42h0n70s</link>
      <description>ARGOS is the Ground Layer Adaptive Optics system of the Large Binocular Telescope, on each side it uses three Laser Guide Stars, generated by Rayleigh backscattered light of pulsed lasers. Three Shack-Hartmann WFS are used to measure the wavefront distortion in the Ground Layer. The SLOpe Detection And Ranging (SLODAR) is a technique used to measure the atmospheric turbulence profiles. Cross correlation of wavefronts gradients from multiple stars are used to estimate the relative strength of turbulent layers at different altitudes. We present here the first results obteined on sky of appling the SLODAR technique to ARGOS comparing then with a previous study based on end-to-end simulations.</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/42h0n70s</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Mazzoni, Tommaso</name>
      </author>
      <author>
        <name>Busoni, Lorenzo</name>
      </author>
      <author>
        <name>Esposito, Simone</name>
      </author>
      <author>
        <name>Bonaglia, Marco</name>
      </author>
    </item>
    <item>
      <title>Point spread function determination for Keck adaptive optics: overview</title>
      <link>https://escholarship.org/uc/item/2mn1w74z</link>
      <description>&lt;p&gt;One of the primary scientific limitations of adaptive optics (AO) has been the incomplete knowledge of the point spread function (PSF), which has made it difficult to use AO for accurate photometry and astrometry in both crowded and sparse fields, for extracting intrinsic morphologies and spatially resolved kinematics, and for detecting faint sources in the presence of brighter sources. To address this we initiated a program to determine and demonstrate PSF determination for science observations obtained with Keck AO. This paper aims to give a broad view of the progress achieved in implementing this capability for Keck AO science observations.The concept and the implementation are briefly described. The design and development of prototype operational tools for automated PSF reconstruction is presented in detail. On-sky performance of the technique is discussed by comparing the reconstructed PSFs to the NIRC2 science camera’s PSFs. The PSF algorithm development for this program...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/2mn1w74z</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Ragland, Sam</name>
      </author>
      <author>
        <name>Jolissaint, Laurent</name>
      </author>
      <author>
        <name>Wizinowich, Peter</name>
      </author>
      <author>
        <name>Witzel, Gunther</name>
      </author>
      <author>
        <name>Chock, Jon</name>
      </author>
      <author>
        <name>Mader, Jeff</name>
      </author>
      <author>
        <name>Morris, Mark</name>
      </author>
      <author>
        <name>Kwok, Shui</name>
      </author>
    </item>
    <item>
      <title>Recent Improvements to the Keck II Laser Guide Star Facility</title>
      <link>https://escholarship.org/uc/item/20x7p7qb</link>
      <description>The laser guide star (LGS) adaptive optics (AO) system on the Keck II telescope has been upgraded with a Center Launch Laser System (CLS) and a next generation laser (NGL; i.e. a TOPTICA/MPBC laser) is being implemented. The purpose of the CLS upgrade is to improve the performance of the existing Keck II LGS AO system by reducing the perspective elongation of the LGS as seen by the AO wavefront sensor and hence the measurement error, one of the largest terms in the current error budget. This performance improvement is achieved by projecting the laser from behind the Keck telescope’s secondary mirror instead of from the side of the Keck telescope. The purpose of the NGL upgrade is to increase the laser return and improve laser operability for science operation. The higher return from the NGL would open up new possibilities for further AO upgrades such as a laser asterism to reduce the focal anisoplanatism, and to increase the wavefront sensor (WFS) sampling rate to reduce the bandwidth...</description>
      <guid isPermaLink="true">https://escholarship.org/uc/item/20x7p7qb</guid>
      <pubDate>Thu, 14 Jul 2016 00:00:00 +0000</pubDate>
      <author>
        <name>Ragland, Sam</name>
      </author>
      <author>
        <name>Chin, Jason</name>
      </author>
      <author>
        <name>Wizinowich, Peter</name>
      </author>
      <author>
        <name>Cetre, Sylvain</name>
      </author>
      <author>
        <name>Lilley, Scott</name>
      </author>
      <author>
        <name>Wetherell, Ed</name>
      </author>
      <author>
        <name>Medeiros, Drew</name>
      </author>
      <author>
        <name>Rampy, Rachel</name>
      </author>
    </item>
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