| Heavy Ion Collisions: The Big Picture and the Big Questions |
50 |
| Neutrinoless Double-Beta Decay: Status and Prospects |
44 |
| Deep Learning and Its Application to LHC Physics |
33 |
| Multiquark States |
31 |
| Small System Collectivity in Relativistic Hadronic and Nuclear Collisions |
31 |
| Merger and Mass Ejection of Neutron Star Binaries |
27 |
| Nonempirical Interactions for the Nuclear Shell Model: An Update |
24 |
| From Nuclei to the Cosmos: Tracing Heavy-Element Production with the Oldest Stars |
23 |
| eV-Scale Sterile Neutrinos |
22 |
| Lattice QCD and Three-Particle Decays of Resonances |
18 |
| Quantum Monte Carlo Methods in Nuclear Physics: Recent Advances |
18 |
| Dark Matter Searches at Colliders |
15 |
| The Short-Baseline Neutrino Program at Fermilab |
14 |
| Open Heavy-Flavor Production in Heavy-Ion Collisions |
13 |
| Penning-Trap Mass Measurements in Atomic and Nuclear Physics |
9 |
| Jefferson Lab at 12 GeV: The Science Program |
9 |
| High-Energy Multimessenger Transient Astrophysics |
8 |
| Dispersion Theory in Electromagnetic Interactions |
8 |
| Structure of S =-2 Hypernuclei and Hyperon-Hyperon Interactions |
8 |
| Particle Acceleration by Supernova Shocks and Spallogenic Nucleosynthesis of Light Elements |
8 |
| On the Properties of Neutrinos |
7 |
| Neutrino Emission as Diagnostics of Core-Collapse Supernovae |
7 |
| Neutrino Physics with Dark Matter Detectors |
6 |
| The First fm/c of Heavy-Ion Collisions |
6 |
| Our Future Nuclear Data Needs |
4 |
| Future Circular Colliders |
3 |
| Progress in Measurements of 0.1-10 GeV Neutrino-Nucleus Scattering and Anticipated Results from Future Experiments |
2 |
| Automated Computation of One-Loop Amplitudes |
1 |
| Determination of the Proton's Weak Charge and Its Constraints on the Standard Model |
0 |
| Function Theory for Multiloop Feynman Integrals |
0 |
| Silicon Calorimeters |
0 |
| The Construction of ATLAS and CMS |
0 |