Centrality dependence of strange particle production in Pb-Pb collisions at s NN = 5.02 TeVThe centrality dependence of strange (KS0, + ) and multi-strange (- + +, - + +) hadron production is measured by ALICE in the LHC…ALICE Collaboration·Nov 13, 2025SaveLearn
Energy Levels of 16BeIn this document, experimental nuclear structure data are evaluated for 16Be. The details of each reaction populating 16Be levels are compiled and evaluated. The combined results provide a set of…K. Setoodehnia, J. H. Kelley·Nov 13, 2025SaveLearn
Energy Levels of 15BeIn this document, experimental nuclear structure data are evaluated for 15Be. The details of each reaction populating 15Be levels are compiled and evaluated. The combined results provide a set of…K. Setoodehnia, J. H. Kelley·Nov 13, 2025SaveLearn
Strangeness production as a function of charged-particle multiplicity in proton-proton collisions at s~=~5.02 TeV(Multi-)strange particle production rates and transverse momentum distributions are measured at midrapidity (|y| < 0.5) as a function of the charged-particle multiplicity density by the ALICE…ALICE Collaboration·Nov 13, 2025SaveLearn
Reducing Systematic Bias in Machine Learning Applications to Signal Extraction in High-Energy Nuclear PhysicsMachine learning techniques are increasingly being applied in high-energy nuclear physics data analysis thanks to their outstanding performance. One key challenge in such applications is the…Yan Wang, Rangrong Ma, Kaifeng Shen et al.·Nov 13, 2025SaveLearn
β+ radioactive nuclei created during proton therapyDuring proton therapy, the beam flux decreases due to inelastic interactions with nuclei. At the highest energies used in proton therapy around 25\% protons initiate nuclear reactions. This report…Izabela Skwira-Chalot, Przemysław Sekowski, Agata Taranienko et al.·Nov 12, 2025SaveLearn
Latest results from CUORE and prospects for CUPIDThe search for neutrinoless double beta decay (0ββ) is fundamental for investigating lepton-number violation, probing new physics beyond the Standard Model, and determining whether…K. Zhao·Nov 10, 2025SaveLearn
Energy Levels of 8CIn this document, experimental nuclear structure data are evaluated for 8C. The details of each reaction populating 8C levels are compiled and evaluated. The combined results provide a set of adopted…K. Setoodehnia, J. H. Kelley·Nov 10, 2025SaveLearn
Energy Levels of 19NeIn this document, experimental nuclear structure data are evaluated for 19Ne. 19Ne was first identified by (1939Fo01), see (2012Th01). The details of each reaction and decay experiment populating…K. Setoodehnia, J. H. Kelley, C. G. Sheu·Nov 10, 2025SaveLearn
Energy Levels of 18NeIn this document, experimental nuclear structure data are evaluated for 18Ne for ENSDF. 18Ne was first identified by (1954Go17), see (2012Th01). The details of each reaction and decay experiment…K. Setoodehnia, J. H. Kelley, C. G. Sheu·Nov 10, 2025SaveLearn
Experimental review on the chiral magnetic effect in relativistic heavy ion collisionsThe chiral magnetic effect (CME) refers to a predicted phenomena in quantum chromodynamics that manifests as a charge separation along an external magnetic field, driven by an imbalance of quark…Wei Li, Qiye Shou, Fuqiang Wang·Nov 10, 2025SaveLearn
Opportunities for Imaging Light Nuclei with a Second Interaction Region at the Electron-Ion ColliderThe upcoming Electron-Ion Collider (EIC) will address several outstanding puzzles in modern nuclear physics. Key questions-such as the partonic structure of nucleons and nuclei and the origin of…Wan Chang, Elke-Caroline Aschenauer, Alexander Jentsch et al.·Nov 7, 2025SaveLearn
Charged-Particle Multiplicity Dependence of Net-Proton Cumulants in Zr+Zr and Ru+Ru Collisions at sNN = 200 GeVWe present measurements of cumulants of event-by-event net-proton distribution at mid-rapidity and their ratios up to the sixth order as a function of charged-particle multiplicity in Zr+Zr and…The STAR Collaboration·Nov 7, 2025SaveLearn
Production of High-Specific-Activity Radioisotopes Using High-Energy Fusion NeutronsWe show that transmutation driven by high-energy neutrons from deuterium-tritium (D-T) fusion reactions can produce many important medical radioisotopes - including 32P, 60Co, 64Cu,…J. F. Parisi, A. Rutkowski, J. Harter et al.·Nov 4, 2025SaveLearn
Roper Resonance Structure and Exploration of Emergent Hadron Mass from CLAS Electroproduction DataThe N(1440)1/2+ nucleon resonance, first identified in 1964 by L.D. Roper and collaborators in analyses of π N hadroproduction data have continued to provide pivotal insights that serve to…V. I. Mokeev, D. S. Carman·Nov 3, 2025SaveLearn
Charged-Current Elastic Scattering at the Electron-Ion ColliderWe discuss the measurement of the charged-current elastic scattering process e-p→e n at the Electron-Ion Collider (EIC). This process provides sensitivity to the poorly constrained…Henry T. Klest·Nov 3, 2025SaveLearn
Three-dimensional sizes and shapes of pion emission in heavy-ion collisionsIn the era of precision measurements in high-energy heavy-ion physics, there is an increasing expectation towards phenomenological and theoretical studies to provide a better description of data. In…Daniel Kincses, Emese Arpasi, Laszlo Kovacs et al.·Nov 3, 2025SaveLearn
Observation of oscillations and near-barrier suppression in the fusion of 20O + pUsing an active target detector, the fusion excitation function for 20O + 1H was measured for the first time. Near the barrier, the fusion cross section manifests an oscillatory behavior with…H. Desilets, Rohit Kumar, R. T. deSouza et al.·Nov 2, 2025SaveLearn
sPHENIX measurements of heavy flavor production in p+p collisionssPHENIX is the first new collider detector experiment dedicated to heavy-ion physics since the LHC began collecting data. Successfully commissioned in 2023-2024, one of its standout features is a…Xudong Yu·Nov 1, 2025SaveLearn
Investigating charm-quark dynamics in the QGP via the charm-hadron elliptic flow in Pb-Pb collisions with ALICEIn these proceedings, the elliptic flow (v2) measurement of prompt and non-prompt charm hadrons - originating respectively from the fragmentation of a charm quark and from the decay of hadrons…Marcello Di Costanzo·Nov 1, 2025SaveLearn
First Study of Exclusive Production of Multi-Hadron Final States in Ultraperipheral CollisionsThe study of exclusive photoproduction of multi-hadron final states in ultra-peripheral collisions (UPCs) provides a unique avenue to explore quantum chromodynamics (QCD) and the nature of resonances…Amrit Gautam·Oct 31, 2025SaveLearn
Measurement of Transverse Single-Spin Asymmetries in π0 and η Meson Production in s = 200 GeV p+p Collisions with sPHENIXThe sPHENIX experiment is a next-generation collider detector at the Relativistic Heavy Ion Collider (RHIC) designed for rare jet and heavy-flavor probes of Au + Au, p + Au, and polarized p+p…Gregory Mattson·Oct 31, 2025SaveLearn
First evidence for the J>1 components of the pygmy dipole resonance in neutron-rich nucleiGamma (γ) decay shapes the synthesis of heavy elements in neutron-rich nuclear environments of neutron star mergers, supplying the Universe with heavy elements. The low-energy pygmy dipole…R. Li, E. Litvinova, M. N. Harakeh et al.·Oct 31, 2025SaveLearn
Characterizing the initial state and dynamical evolution in XeXe and PbPb collisions using multiparticle cumulantsFor the first time, correlations among mixed-order moments of two or three flow harmonics-(vnk,vml) and (vnk,vml, vpq), with k, l, and q denoting the…CMS Collaboration·Oct 30, 2025SaveLearn
Enhanced production of charged over neutral kaons in Ar+Sc collisions measured by NA61/SHINE at CERN SPSThe isospin symmetry, originating from similar masses of u and d quarks, if exact would result in equal numbers of charged (K+ and K-) and neutral (K0 and K0) mesons…Tomasz Matulewicz·Oct 30, 2025SaveLearn