Computing Sciences

Parent: Lawrence Berkeley National Laboratory

eScholarship stats: Breakdown by Item for March through June, 2026

ItemTitleTotal requestsDownloadView-only%Dnld
4w1110bbThe probability of backtest overfitting1,41151489736.4%
0bm9c1vbMeasurements of azimuthal anisotropies of jet production in Pb+Pb collisions at sNN=5.02 TeV with the ATLAS detector1,3671,2769193.3%
7298g7m9A Guide to Using GitHub for Developing and Versioning Data Standards and Reporting Formats1,1691,01415586.7%
3h26p692Commentary: The Materials Project: A materials genome approach to accelerating materials innovation98928670328.9%
3wd2596fSearch for the HH →bb¯bb¯ process via vector-boson fusion production using proton-proton collisions at s = 13 TeV with the ATLAS detector95415180315.8%
9j80t4m1The 16th Data Release of the Sloan Digital Sky Surveys: First Release from the APOGEE-2 Southern Survey and Full Release of eBOSS Spectra92809280.0%
2zz1p7scSUPPLEMENT: “LOCALIZATION AND BROADBAND FOLLOW-UP OF THE GRAVITATIONAL-WAVE TRANSIENT GW150914” (2016, ApJL, 826, L13)88070617480.2%
6j00b2h4Anthropogenic influences on major tropical cyclone events88027960131.7%
5vt9q733The NetSage measurement and analysis framework in practice866687987.9%
46523263Engineering high-coherence superconducting qubits85832353537.6%
2sr9m6gkParameter Analysis of the VPIN (Volume synchronized Probability of Informed Trading) Metric78812866016.2%
5vj6n2qtMeasurement of an excess of B¯→D(*)τ-ν¯τ decays and implications for charged Higgs bosons761557067.2%
9wp5j0dqNuclear Physics Exascale Requirements Review: An Office of Science review sponsored jointly by Advanced Scientific Computing Research and Nuclear Physics, June 15 - 17, 2016, Gaithersburg, Maryland7556668988.2%
78j3c9v42020 High Energy Physics Network Requirements Review (Final Report)71755316477.1%
9tq3327hHow “Backtest Overfitting” in Finance Leads to False Discoveries70735235549.8%
0cv1p1ncGPU Computing70521149429.9%
2c33r6fbThe ATLAS experiment at the CERN Large Hadron Collider: a description of the detector configuration for Run 367148418772.1%
1dc9j42vHigh Energy Physics Network Requirements Review (Final Report, July 2024–December 2024)6595768387.4%
4x36p9svLUX-ZEPLIN (LZ) Technical Design Report65827338541.5%
6qv9r31xAccelerated data-driven materials science with the Materials Project63744219569.4%
4z5380qsGaussian processes for autonomous data acquisition at large-scale synchrotron and neutron facilities63047915176.0%
14890865AMR‐Wind: A Performance‐Portable, High‐Fidelity Flow Solver for Wind Farm Simulations62550112480.2%
3mz7h3mmBiological and Environmental Research Network Requirements Review (Final Report)62250212080.7%
5cg43163Extended Fayans energy density functional: optimization and analysis613565579.1%
8h57b16gHardware Evaluation Analytical Modeling and Node Simulation: Benefits of Tighter GPU Integration60950510482.9%
8sr171mxSynthetic Scientific Image Generation with VAE, GAN, and Diffusion Model Architectures59128930248.9%
3jj0h54nBasic Energy Sciences Network Requirements Review (Final Report)59048210881.7%
30v0j6ccPython Materials Genomics (pymatgen): A robust, open-source python library for materials analysis58831827054.1%
1946q35dDESI 2024: Constraints on physics-focused aspects of dark energy using DESI DR1 BAO data58238220065.6%
9hv6s51jCMB-S4 Science Case, Reference Design, and Project Plan58238519766.2%
95z827gtOperation and performance of the ATLAS tile calorimeter in LHC Run 257644313376.9%
84j2j8trQuantum Simulation for High-Energy Physics5758249314.3%
2vt3f7r6High Energy Physics Network Requirements Review (Final Report, July-October 2020)5715036888.1%
9pm0x5mhMachine learning for metabolic engineering: A review57034322760.2%
96k425dvRoadmap on methods and software for electronic structure based simulations in chemistry and materials56932924057.8%
35q300g7Early time solution as an alternative to the late time evolving dark energy with DESI DR2 BAO5679447316.6%
630634m8Quantum-centric supercomputing for materials science: A perspective on challenges and future directions56733423358.9%
92h5v1x8PRODUCTION AND DECAY OF * (1820)5665165091.2%
9pd8926jAnomaly detection search for new resonances decaying into a Higgs boson and a generic new particle X in hadronic final states using s=13 TeV pp collisions with the ATLAS detector55945410581.2%
0g69b4vbSEARCHES FOR TIME-DEPENDENT NEUTRINO SOURCES WITH ICECUBE DATA FROM 2008 TO 20125485948910.8%
5zh5z08qSoftware Deployment Process at NERSC: Deploying the Extreme-scale Scientific Software Stack (E4S) Using Spack at the National Energy Research Scientific Computing Center (NERSC)53138414772.3%
0g60c3c5Combination of inclusive and differential tt¯ charge asymmetry measurements using ATLAS and CMS data at s=7 and 8 TeV5216645512.7%
8q66m3d6Readiness of the ATLAS Tile Calorimeter for LHC collisions51616834832.6%
9939h1xsUsing pile-up collisions as an abundant source of low-energy hadronic physics processes in ATLAS and an extraction of the jet energy resolution51022428643.9%
6dn8z4sgCosmological constraints from the cross-correlation of DESI Luminous Red Galaxies with CMB lensing from Planck PR4 and ACT DR650836614272.0%
8m26537sPlanck 2013 results. XVI. Cosmological parameters50830919960.8%
4zm9r0kdSearch for a standard model Higgs boson in the H→ZZ→ℓ+ℓ-νν- decay channel using 4.7fb<sup>-1</sup>of s=7TeV data with the ATLAS detector506434638.5%
9256778cSearch for a resonance decaying into a scalar particle and a Higgs boson in the final state with two bottom quarks and two photons in proton–proton collisions at s = 13 TeV with the ATLAS detector50424525948.6%
0cg446n2Instruction Roofline: An insightful visual performance model for GPUs50219131138.0%
0z1776knNetwork of networks: Time series clustering of AmeriFlux sites5014336886.4%

Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.