Computing Sciences
Parent: Lawrence Berkeley National Laboratory
eScholarship stats: Breakdown by Item for March through June, 2026
| Item | Title | Total requests | Download | View-only | %Dnld |
|---|---|---|---|---|---|
| 4w1110bb | The probability of backtest overfitting | 1,411 | 514 | 897 | 36.4% |
| 0bm9c1vb | Measurements of azimuthal anisotropies of jet production in Pb+Pb collisions at sNN=5.02 TeV with the ATLAS detector | 1,367 | 1,276 | 91 | 93.3% |
| 7298g7m9 | A Guide to Using GitHub for Developing and Versioning Data Standards and Reporting Formats | 1,169 | 1,014 | 155 | 86.7% |
| 3h26p692 | Commentary: The Materials Project: A materials genome approach to accelerating materials innovation | 989 | 286 | 703 | 28.9% |
| 3wd2596f | Search for the HH →bb¯bb¯ process via vector-boson fusion production using proton-proton collisions at s = 13 TeV with the ATLAS detector | 954 | 151 | 803 | 15.8% |
| 9j80t4m1 | The 16th Data Release of the Sloan Digital Sky Surveys: First Release from the APOGEE-2 Southern Survey and Full Release of eBOSS Spectra | 928 | 0 | 928 | 0.0% |
| 2zz1p7sc | SUPPLEMENT: “LOCALIZATION AND BROADBAND FOLLOW-UP OF THE GRAVITATIONAL-WAVE TRANSIENT GW150914” (2016, ApJL, 826, L13) | 880 | 706 | 174 | 80.2% |
| 6j00b2h4 | Anthropogenic influences on major tropical cyclone events | 880 | 279 | 601 | 31.7% |
| 5vt9q733 | The NetSage measurement and analysis framework in practice | 866 | 68 | 798 | 7.9% |
| 46523263 | Engineering high-coherence superconducting qubits | 858 | 323 | 535 | 37.6% |
| 2sr9m6gk | Parameter Analysis of the VPIN (Volume synchronized Probability of Informed Trading) Metric | 788 | 128 | 660 | 16.2% |
| 5vj6n2qt | Measurement of an excess of B¯→D(*)τ-ν¯τ decays and implications for charged Higgs bosons | 761 | 55 | 706 | 7.2% |
| 9wp5j0dq | Nuclear Physics Exascale Requirements Review: An Office of Science review sponsored jointly by Advanced Scientific Computing Research and Nuclear Physics, June 15 - 17, 2016, Gaithersburg, Maryland | 755 | 666 | 89 | 88.2% |
| 78j3c9v4 | 2020 High Energy Physics Network Requirements Review (Final Report) | 717 | 553 | 164 | 77.1% |
| 9tq3327h | How “Backtest Overfitting” in Finance Leads to False Discoveries | 707 | 352 | 355 | 49.8% |
| 0cv1p1nc | GPU Computing | 705 | 211 | 494 | 29.9% |
| 2c33r6fb | The ATLAS experiment at the CERN Large Hadron Collider: a description of the detector configuration for Run 3 | 671 | 484 | 187 | 72.1% |
| 1dc9j42v | High Energy Physics Network Requirements Review (Final Report, July 2024–December 2024) | 659 | 576 | 83 | 87.4% |
| 4x36p9sv | LUX-ZEPLIN (LZ) Technical Design Report | 658 | 273 | 385 | 41.5% |
| 6qv9r31x | Accelerated data-driven materials science with the Materials Project | 637 | 442 | 195 | 69.4% |
| 4z5380qs | Gaussian processes for autonomous data acquisition at large-scale synchrotron and neutron facilities | 630 | 479 | 151 | 76.0% |
| 14890865 | AMR‐Wind: A Performance‐Portable, High‐Fidelity Flow Solver for Wind Farm Simulations | 625 | 501 | 124 | 80.2% |
| 3mz7h3mm | Biological and Environmental Research Network Requirements Review (Final Report) | 622 | 502 | 120 | 80.7% |
| 5cg43163 | Extended Fayans energy density functional: optimization and analysis | 613 | 56 | 557 | 9.1% |
| 8h57b16g | Hardware Evaluation Analytical Modeling and Node Simulation: Benefits of Tighter GPU Integration | 609 | 505 | 104 | 82.9% |
| 8sr171mx | Synthetic Scientific Image Generation with VAE, GAN, and Diffusion Model Architectures | 591 | 289 | 302 | 48.9% |
| 3jj0h54n | Basic Energy Sciences Network Requirements Review (Final Report) | 590 | 482 | 108 | 81.7% |
| 30v0j6cc | Python Materials Genomics (pymatgen): A robust, open-source python library for materials analysis | 588 | 318 | 270 | 54.1% |
| 1946q35d | DESI 2024: Constraints on physics-focused aspects of dark energy using DESI DR1 BAO data | 582 | 382 | 200 | 65.6% |
| 9hv6s51j | CMB-S4 Science Case, Reference Design, and Project Plan | 582 | 385 | 197 | 66.2% |
| 95z827gt | Operation and performance of the ATLAS tile calorimeter in LHC Run 2 | 576 | 443 | 133 | 76.9% |
| 84j2j8tr | Quantum Simulation for High-Energy Physics | 575 | 82 | 493 | 14.3% |
| 2vt3f7r6 | High Energy Physics Network Requirements Review (Final Report, July-October 2020) | 571 | 503 | 68 | 88.1% |
| 9pm0x5mh | Machine learning for metabolic engineering: A review | 570 | 343 | 227 | 60.2% |
| 96k425dv | Roadmap on methods and software for electronic structure based simulations in chemistry and materials | 569 | 329 | 240 | 57.8% |
| 35q300g7 | Early time solution as an alternative to the late time evolving dark energy with DESI DR2 BAO | 567 | 94 | 473 | 16.6% |
| 630634m8 | Quantum-centric supercomputing for materials science: A perspective on challenges and future directions | 567 | 334 | 233 | 58.9% |
| 92h5v1x8 | PRODUCTION AND DECAY OF * (1820) | 566 | 516 | 50 | 91.2% |
| 9pd8926j | Anomaly 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 detector | 559 | 454 | 105 | 81.2% |
| 0g69b4vb | SEARCHES FOR TIME-DEPENDENT NEUTRINO SOURCES WITH ICECUBE DATA FROM 2008 TO 2012 | 548 | 59 | 489 | 10.8% |
| 5zh5z08q | Software Deployment Process at NERSC: Deploying the Extreme-scale Scientific Software Stack (E4S) Using Spack at the National Energy Research Scientific Computing Center (NERSC) | 531 | 384 | 147 | 72.3% |
| 0g60c3c5 | Combination of inclusive and differential tt¯ charge asymmetry measurements using ATLAS and CMS data at s=7 and 8 TeV | 521 | 66 | 455 | 12.7% |
| 8q66m3d6 | Readiness of the ATLAS Tile Calorimeter for LHC collisions | 516 | 168 | 348 | 32.6% |
| 9939h1xs | Using pile-up collisions as an abundant source of low-energy hadronic physics processes in ATLAS and an extraction of the jet energy resolution | 510 | 224 | 286 | 43.9% |
| 6dn8z4sg | Cosmological constraints from the cross-correlation of DESI Luminous Red Galaxies with CMB lensing from Planck PR4 and ACT DR6 | 508 | 366 | 142 | 72.0% |
| 8m26537s | Planck 2013 results. XVI. Cosmological parameters | 508 | 309 | 199 | 60.8% |
| 4zm9r0kd | Search 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 detector | 506 | 43 | 463 | 8.5% |
| 9256778c | Search 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 detector | 504 | 245 | 259 | 48.6% |
| 0cg446n2 | Instruction Roofline: An insightful visual performance model for GPUs | 502 | 191 | 311 | 38.0% |
| 0z1776kn | Network of networks: Time series clustering of AmeriFlux sites | 501 | 433 | 68 | 86.4% |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.