Computational Research
Parent: Computing Sciences
eScholarship stats: Breakdown by Item for August through November, 2024
Item | Title | Total requests | Download | View-only | %Dnld |
---|---|---|---|---|---|
1gd059hj | UPC++: A High-Performance Communication Framework for Asynchronous Computation | 156 | 17 | 139 | 10.9% |
7jj3v4qg | Observation of Bs0→D¯0KS0 and Evidence for Bs0→D¯*0KS0 Decays | 88 | 0 | 88 | 0.0% |
7w20q9t4 | Observation of the Decay Bc+→Bs0π+ | 85 | 2 | 83 | 2.4% |
92f19749 | LBNL Open Power Data | 80 | 17 | 63 | 21.3% |
3gt5c8sj | Measurement of CP asymmetry in Bs0 → Ds∓K± decays | 77 | 1 | 76 | 1.3% |
7nd0768c | Parallel-In-Time Magnus Integrators | 76 | 3 | 73 | 3.9% |
93h9h1jw | Observation of B+→J/ψ3π+2π- and B+→ψ(2S)π+π+π- decays | 76 | 0 | 76 | 0.0% |
0t91b3vp | Measurement of the Difference of Time-Integrated CP Asymmetries in D0→K-K+ and D0→π-π+ Decays | 65 | 0 | 65 | 0.0% |
1hx0b5m6 | Study of DsJ(*) + mesons decaying to D∗ +KS0 and D*0K+ final states | 65 | 0 | 65 | 0.0% |
37j43258 | How people actually use thermostats | 61 | 7 | 54 | 11.5% |
4625k3w4 | First Experimental Study of Photon Polarization in Radiative Bs0 Decays | 58 | 0 | 58 | 0.0% |
6pd6x4rc | Implications of LHCb measurements and future prospects | 56 | 17 | 39 | 30.4% |
4wd019nz | MFIX-Exa: A path toward exascale CFD-DEM simulations | 50 | 33 | 17 | 66.0% |
7d17t84r | An Automated Disruption-Tolerant Key Management Framework for Critical Systems | 49 | 27 | 22 | 55.1% |
1tt92276 | Hydrodynamics of suspensions of passive and active rigid particles: a rigid multiblob approach | 48 | 33 | 15 | 68.8% |
3vd5q0cp | How People Actually Use Thermostats | 48 | 18 | 30 | 37.5% |
6tw430rw | A fourth-order adaptive mesh refinement algorithm for the multicomponent, reacting compressible Navier–Stokes equations | 47 | 36 | 11 | 76.6% |
4p50k8j7 | Xi‐cam: a versatile interface for data visualization and analysis | 43 | 24 | 19 | 55.8% |
04k9s1mc | Measurement of Bs0 and Ds- Meson Lifetimes | 42 | 3 | 39 | 7.1% |
1sc1r7wv | First observation of the decay Bs0 → KS0K∗(892)0 at LHCb | 42 | 15 | 27 | 35.7% |
8w02f9m1 | Simulating single-coil MRI from the responses of multiple coils | 42 | 18 | 24 | 42.9% |
0d98z7gk | A spectral deferred correction strategy for low Mach number reacting flows subject to electric fields | 41 | 26 | 15 | 63.4% |
4zg9w1vj | Simulating Quantum Materials with Digital Quantum Computers | 41 | 28 | 13 | 68.3% |
0nx638xn | Navier-Stokes characteristic boundary conditions using ghost cells | 39 | 17 | 22 | 43.6% |
6nd4450h | Search for the lepton-flavour violating decay D0→e±μ∓ | 39 | 26 | 13 | 66.7% |
5dz5n11g | Search for the rare decay Bs0→μ+μ- | 38 | 14 | 24 | 36.8% |
1pc9x8m4 | Mitigating Depolarizing Noise on Quantum Computers with Noise-Estimation Circuits | 37 | 26 | 11 | 70.3% |
90w2p04q | THE MEASUREMENT OF RADIATIVE LIFETIMES | 37 | 27 | 10 | 73.0% |
5zb5d4p3 | Linearly Scaling 3D Fragment Method for Large-Scale Electronic Structure Calculations | 36 | 20 | 16 | 55.6% |
2wb885j3 | Search for long-lived particles decaying to e±μ∓ν | 35 | 13 | 22 | 37.1% |
3vd5962g | Observation of – mixing and measurement of mixing frequencies using semileptonic B decays | 35 | 12 | 23 | 34.3% |
7c90z1hr | A Robust and Efficient Implementation of LOBPCG | 35 | 25 | 10 | 71.4% |
88z5n6wc | New algorithms for identifying the flavour of B0 mesons using pions and protons | 35 | 23 | 12 | 65.7% |
8r38q095 | Parallel-In-Time Magnus Integrators | 35 | 30 | 5 | 85.7% |
99j5n7xc | SUGAR: An improved empirical model of Type Ia supernovae based on spectral features | 35 | 23 | 12 | 65.7% |
2j3294hn | How people actually use thermostats | 34 | 23 | 11 | 67.6% |
9mr9g2pd | On the numerical accuracy in finite‐volume methods to accurately capture turbulence in compressible flows | 34 | 22 | 12 | 64.7% |
0711b43j | Measurement of the properties of the Ξb∗ 0 baryon | 33 | 0 | 33 | 0.0% |
1dr0t0sj | Implementing High-Performance Geometric Multigrid Solver with Naturally Grained Messages | 33 | 27 | 6 | 81.8% |
5xb4x6rd | First observation of the decay | 33 | 10 | 23 | 30.3% |
97x0m4qz | Measurement of charged particle multiplicities and densities in pp collisions at s=7TeV in the forward region | 33 | 25 | 8 | 75.8% |
0qj0k57v | Stability of modulation transfer function calibration of surface profilometers using binary pseudo-random gratings and arrays with nonideal groove shapes | 32 | 27 | 5 | 84.4% |
1j62j00j | PypeIt: The Python Spectroscopic Data Reduction Pipeline | 32 | 17 | 15 | 53.1% |
3nj0p0sc | Measurement of the ratio of branching fractions of the decays Λb0 → ψ(2S)Λ and Λb0 → J/ψΛ | 32 | 6 | 26 | 18.8% |
5f346402 | The effect of fluctuations on the helium-ionizing background | 32 | 24 | 8 | 75.0% |
5nn1z710 | Measurement of relative branching fractions of B decays to ψ(2S) and J/ψ mesons | 32 | 11 | 21 | 34.4% |
00301323 | Real time evolution for ultracompact Hamiltonian eigenstates on quantum hardware | 31 | 7 | 24 | 22.6% |
1ck802c6 | Iterative X‐ray spectroscopic ptychography | 31 | 25 | 6 | 80.6% |
2gb372tb | Study of B-→DK-π+π- and B-→Dπ-π+π- decays and determination of the CKM angle γ | 31 | 0 | 31 | 0.0% |
3ts3267r | Mitigating depolarizing noise on quantum computers with noise-estimation circuits | 31 | 6 | 25 | 19.4% |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.