Applied Math & Comp Sci
Parent: Computing Sciences
eScholarship stats: Breakdown by Item for May through August, 2026
| Item | Title | Total requests | Download | View-only | %Dnld |
|---|---|---|---|---|---|
| 4w1110bb | The probability of backtest overfitting | 4,657 | 929 | 3,728 | 19.9% |
| 9tq3327h | How “Backtest Overfitting” in Finance Leads to False Discoveries | 1,631 | 484 | 1,147 | 29.7% |
| 0cv1p1nc | GPU Computing | 1,263 | 268 | 995 | 21.2% |
| 46523263 | Engineering high-coherence superconducting qubits | 934 | 338 | 596 | 36.2% |
| 67z0d2wn | Quantifying Interconnect Energy Efficiency on Perlmutter: pJ/bit Measurements of NVLink, PCIe, Slingshot NICs, and Rosetta Switches | 672 | 288 | 384 | 42.9% |
| 9315g04c | The Artificial Intelligence Ontology: LLM-Assisted Construction of AI Concept Hierarchies | 652 | 214 | 438 | 32.8% |
| 6j00b2h4 | Anthropogenic influences on major tropical cyclone events | 633 | 219 | 414 | 34.6% |
| 4z5380qs | Gaussian processes for autonomous data acquisition at large-scale synchrotron and neutron facilities | 630 | 485 | 145 | 77.0% |
| 59845876 | GASNet-EX Specification Collection, Revision 2024.5.0 | 622 | 117 | 505 | 18.8% |
| 4hn4t174 | Backtest Overfitting in Financial Markets | 593 | 264 | 329 | 44.5% |
| 78h8v7mr | Roofline | 575 | 397 | 178 | 69.0% |
| 8sr171mx | Synthetic Scientific Image Generation with VAE, GAN, and Diffusion Model Architectures | 564 | 222 | 342 | 39.4% |
| 84j2j8tr | Quantum Simulation for High-Energy Physics | 544 | 59 | 485 | 10.8% |
| 0836m5tw | North American extreme precipitation events and related large-scale meteorological patterns: a review of statistical methods, dynamics, modeling, and trends | 539 | 388 | 151 | 72.0% |
| 2zz1p7sc | SUPPLEMENT: “LOCALIZATION AND BROADBAND FOLLOW-UP OF THE GRAVITATIONAL-WAVE TRANSIENT GW150914” (2016, ApJL, 826, L13) | 534 | 391 | 143 | 73.2% |
| 8h57b16g | Hardware Evaluation Analytical Modeling and Node Simulation: Benefits of Tighter GPU Integration | 531 | 444 | 87 | 83.6% |
| 14890865 | AMR‐Wind: A Performance‐Portable, High‐Fidelity Flow Solver for Wind Farm Simulations | 519 | 386 | 133 | 74.4% |
| 21w7f5w7 | High performance computational chemistry: An overview of NWChem a distributed parallel application | 516 | 442 | 74 | 85.7% |
| 9ns2d70c | A Survey of General-Purpose Computation on Graphics Hardware | 515 | 288 | 227 | 55.9% |
| 4sm897jh | From NWChem to NWChemEx: Evolving with the Computational Chemistry Landscape | 506 | 294 | 212 | 58.1% |
| 96k425dv | Roadmap on methods and software for electronic structure based simulations in chemistry and materials | 489 | 361 | 128 | 73.8% |
| 4bg0z2rq | A multimodal large language model for materials science | 486 | 44 | 442 | 9.1% |
| 7tv84567 | High performance sparse multifrontal solvers on modern GPUs | 480 | 170 | 310 | 35.4% |
| 7tn9n67r | A graphics processing unit accelerated sparse direct solver and preconditioner with block low rank compression | 469 | 274 | 195 | 58.4% |
| 77m4j2cn | The complex circumstellar environment of supernova 2023ixf | 465 | 279 | 186 | 60.0% |
| 99c9w6dn | FPGA‐based HPC accelerators: An evaluation on performance and energy efficiency | 463 | 108 | 355 | 23.3% |
| 872004w9 | UPC++ v1.0 Programmer’s Guide, Revision 2022.9.0 | 455 | 104 | 351 | 22.9% |
| 4wv2h6ps | Explicit Quantum Circuits for Block Encodings of Certain Sparse Matrices | 445 | 145 | 300 | 32.6% |
| 00j3z3rd | AMReX: a framework for block-structured adaptive mesh refinement | 443 | 326 | 117 | 73.6% |
| 183320km | Illuminating gravitational waves: A concordant picture of photons from a neutron star merger | 440 | 254 | 186 | 57.7% |
| 5z10f2nc | Detection and Attribution of Observed Impacts | 427 | 194 | 233 | 45.4% |
| 7rm1k307 | Weather effects on the lifecycle of U.S. Department of Defense equipment replacement (WELDER) | 427 | 349 | 78 | 81.7% |
| 5vs142zg | Practical Introduction to Benchmarking and Characterization of Quantum Computers | 425 | 353 | 72 | 83.1% |
| 630634m8 | Quantum-centric supercomputing for materials science: A perspective on challenges and future directions | 425 | 252 | 173 | 59.3% |
| 0xg7b704 | GASNet-EX: A High-Performance, Portable Communication Library for Exascale | 419 | 88 | 331 | 21.0% |
| 8r5848vp | RXMesh: A GPU Mesh Data Structure | 416 | 212 | 204 | 51.0% |
| 2c32t3cs | A Distributed-Memory Package for Dense Hierarchically Semi-Separable Matrix Computations Using Randomization | 413 | 174 | 239 | 42.1% |
| 7d8080pn | Bendability parameter for twisted ribbons to describe longitudinal wrinkling and delineate the near-threshold regime | 412 | 367 | 45 | 89.1% |
| 1sw682g6 | KSSOLV 2.0: An efficient MATLAB toolbox for solving the Kohn-Sham equations with plane-wave basis set | 410 | 220 | 190 | 53.7% |
| 62n598cg | Manipulating chiral spin transport with ferroelectric polarization | 410 | 309 | 101 | 75.4% |
| 9fr483jq | A Fast Butterfly-Compressed Hadamard–Babich Integrator for High-Frequency Helmholtz Equations in Inhomogeneous Media with Arbitrary Sources | 410 | 355 | 55 | 86.6% |
| 0cg446n2 | Instruction Roofline: An insightful visual performance model for GPUs | 404 | 168 | 236 | 41.6% |
| 33020316 | Geometrical Frustration and Defect Formation in Growth of Colloidal Nanoparticle Crystals on a Cylinder: Implications for Assembly of Chiral Nanomaterials | 397 | 331 | 66 | 83.4% |
| 5tz795vq | Roofline: An Insightful Visual Performance Model for Floating-Point Programs and Multicore Architectures | 397 | 143 | 254 | 36.0% |
| 25m555p9 | UPC++ Specification v1.0, Draft 10 | 396 | 81 | 315 | 20.5% |
| 11k10948 | The Physics of the B Factories | 395 | 278 | 117 | 70.4% |
| 6qz3r1gf | A 3D Parallel Algorithm for QR Decomposition | 388 | 348 | 40 | 89.7% |
| 50r7r20d | Multi-messenger Observations of a Binary Neutron Star Merger* * Any correspondence should be addressed to lvc.publications@ligo.org. | 383 | 62 | 321 | 16.2% |
| 85p1c2x2 | A fully-integrated lattice Boltzmann method for fluid–structure interaction | 382 | 234 | 148 | 61.3% |
| 29x1g9t2 | Artificial intelligence driven laser parameter search: Inverse design of photonic surfaces using greedy surrogate-based optimization | 380 | 208 | 172 | 54.7% |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.