- Main
AT2025ulz and S250818k: Leveraging DESI Spectroscopy in the Hunt for a Kilonova Associated with a Subsolar-mass Gravitational-wave Candidate
- Hall, Xander J;
- Palmese, Antonella;
- O’Connor, Brendan;
- Gruen, Daniel;
- Busmann, Malte;
- Gassert, Julius;
- Hu, Lei;
- Hernandez, Ignacio Magaña;
- Aguilar, Jessica Nicole;
- Amsellem, Ariel;
- Ahlen, Steven;
- Banovetz, John;
- BenZvi, Segev;
- Bianchi, Davide;
- Brooks, David;
- Castander, Francisco Javier;
- Claybaugh, Todd;
- Cuceu, Andrei;
- Dey, Arjun;
- Doel, Peter;
- Fabà-Moreno, Jennifer;
- Ferraro, Simone;
- Font-Ribera, Andreu;
- Forero-Romero, Jaime E;
- Gutierrez, Gaston;
- Le Guillou, Laurent;
- Joyce, Dick;
- Kisner, Theodore;
- Kremin, Anthony;
- Lahav, Ofer;
- Lamman, Claire;
- Landriau, Martin;
- Levi, Michael;
- de la Macorra, Axel;
- Manera, Marc;
- Meisner, Aaron;
- Miquel, Ramon;
- Moustakas, John;
- Nadathur, Seshadri;
- Prada, Francisco;
- Pérez-Ràfols, Ignasi;
- Rossi, Graziano;
- Sanchez, Eusebio;
- Schlegel, David;
- Schubnell, Michael;
- Sprayberry, David;
- Tarlé, Gregory;
- Weaver, Benjamin Alan;
- Zhou, Rongpu;
- Zou, Hu;
- Collaboration, The Dark Energy Spectroscopic Instrument
Published Web Location
https://doi.org/10.3847/2041-8213/ae4338Abstract
On 2025 August 18, the LIGO–Virgo–KAGRA collaboration reported a subthreshold gravitational-wave candidate detection consistent with a subsolar-mass neutron star merger, denoted S250818k. An optical transient, AT2025ulz, was discovered within the localization region. AT2025ulz initially appeared to meet the expected behavior of kilonova emission, the telltale signature of a binary neutron star merger. The transient subsequently rebrightened after ∼5 days and was classified as a Type IIb supernova. In this work, we analyze the observations of its host galaxy obtained by the Dark Energy Spectroscopic Instrument (DESI). From the DESI spectrum, we obtain a secure redshift of z = 0.084840 ± 0.000006. If S250818k has an astrophysical origin, this places the transient within 2σ of the gravitational-wave distance and results in an integral overlap between the gravitational-wave alert and the transient location of log10I≈3.9−4.2 . Our analysis of the host galaxy’s spectral energy distribution reveals a star-forming, dusty galaxy with stellar mass ∼1010 M⊙, broadly consistent with the population of both short gamma-ray bursts and core-collapse supernova host galaxies. We also present our follow-up of DESI-selected candidate host galaxies using the Fraunhofer Telescope at the Wendelstein Observatory, and show the promise of DESI for associating or rejecting candidate electromagnetic counterparts to gravitational-wave alerts. These results emphasize the value of DESI’s extensive spectroscopic dataset in rapidly characterizing host galaxies, enabling spectroscopic host subtraction, and guiding targeted follow-up.
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