Quark-Meson Coupling Model in Heavy-Ion Collision SimulationsThe quark-meson coupling (QMC) model incorporates quark degrees of freedom into the relativistic mean-field (RMF) framework, distinguishing it from traditional quantum hadrodynamics (QHD), which…Dae Ik Kim, Chang-Hwan Lee, Kyungil Kim et al.·Mar 29, 2026SaveLearn
Global polarization of hyperons and its sensitivity to equations of state in low-energy heavy-ion collisionsSignificant global polarization of hyperons along the direction of the orbital angular momentum has been measured in non-central heavy-ion collisions where the equation of state (EOS) of…Cong Yi, Shi Pu, Long-Gang Pang et al.·Mar 29, 2026SaveLearn
Microscopic theory of the γ decay of giant resonances in superfluid nucleiRecent advances in experiments have enabled the measurement of γ-decay from giant and pygmy resonances to low-lying states, establishing this technique as a unique probe for nuclear structure.…W. -L. Lv, Y. -F. Niu, G. Colò·Mar 28, 2026SaveLearn
Interaction of accelerator neutrinos with energies up to 55 MeV with 127I nucleiThe interaction of neutrinos with an energy of up to 55~MeV from the Spallation Neutron Source (SNS) accelerator with a perspective 127I detector at the Oak Ridge National Laboratory (United…Yu. S. Lutostansky, A. N. Fazliakhmetov, V. N. Tikhonov et al.·Mar 28, 2026SaveLearn
Fusion and reactions of α+8Be in the Hoyle resonance and associated resonances regionThe fusion of α and 8Be to produce a 12C nucleus is a crucial process in nucleosynthesis. In the laboratory, this process can only be studied theoretically as a 8Be target or projectile…Teck-Ghee Lee, Orhan Bayrak, Cheuk-Yin Wong·Mar 28, 2026SaveLearn
A time-dependent wave-packet approach to reactions for quantum computationWe describe a method for obtaining the scattering matrix for nuclear or chemical reactions on a finite lattice. Aside from the preparation of the initial and final states as wave packets, the only…Evan Rule, Ionel Stetcu·Mar 27, 2026SaveLearn
Inelastic nucleon-nucleus scattering from a microscopic point of viewWe apply to the nucleon-nucleus inelastic process a fully coherent microscopic multiple scattering approach. Our study addresses the complexities inherent in characterizing inelastic scattering…Matteo Vorabbi, Michael Gennari, Paolo Finelli et al.·Mar 27, 2026SaveLearn
Neutron star structure and nuclear matter properties from a general Walecka-type model with Bayesian analysisWe establish a Bayesian analysis framework with a general Walecka-type relativistic mean-field model to study dense nuclear matter under constraints from nuclear matter properties and neutron star…Yao Ma, Jia-Ying Xiong·Mar 27, 2026SaveLearn
Bayesian analysis of proton-proton fusion in chiral effective field theoryThe astrophysical S-factor for the proton-proton fusion is calculated in the low-energy regime for a variety of nuclear interactions and consistent nuclear currents, derived within chiral effective…Vittorio Barlucchi, Alex Gnech, Scilla Degl'Innocenti et al.·Mar 26, 2026SaveLearn
Proton-Neutron Pairing in N=Z Nuclei within the Quark-Meson-Coupling Energy Density FunctionalWe investigate the impact of isovector and isoscalar proton-neutron pairing correlations on the ground-state properties of even-even N=Z nuclei with mass numbers between A=16 and A=120. Nuclear mean…T. Popa, N. Sandulescu, D. Gambacurta·Mar 26, 2026SaveLearn
Extracting Resonance Width from Lattice Quantum Monte Carlo Simulations Using Analytical Continuation MethodNuclear lattice effective field theory (NLEFT) provides an efficient ab initio framework for computing low-lying states via imaginary-time projection. However, the extraction of unstable resonances,…Zhong-Wang Niu, Shi-Sheng Zhang, Bing-Nan Lu·Mar 26, 2026SaveLearn
A dual description of quarks and baryons: Quarkyonic matter within a relativistic quark modelWe investigate quarkyonic matter within a relativistic quark model by combining the dual quarkyonic picture with the quark-meson coupling (QMC) model. Using relativistic gaussian quark wavefunctions…Tsuyoshi Miyatsu, Myung-Ki Cheoun, Koichi Saito·Mar 26, 2026SaveLearn
Many-body perturbation theory for the nuclear equation of state up to fifth orderWe present an automated, GPU-accelerated framework for many-body perturbation theory (MBPT) calculations of the zero-temperature nuclear equation of state (EOS) based on chiral nucleon-nucleon (NN)…C. Drischler, K. S. McElvain, P. Arthuis·Mar 25, 2026SaveLearn
Deep learning approaches to extract nuclear deformation parameters from initial-state information in heavy-ion collisionsThe deformation of heavy nuclei leaves characteristic imprints on the initial conditions of relativistic heavy-ion collisions. However, event-by-event fluctuations make the quantitative extraction of…Jun-Qi Tao, Yang Liu, Yu Sha et al.·Mar 25, 2026SaveLearn
The Effects of Multi-Λ Hyperons on Collective Modes in NucleiThe dynamical influence of Λ hyperons on the excited-state properties of closed-shell multi-Λ Ca, Ni, Sn and Pb hypernuclei is investigated using the self-consistent Hartree-Fock + Random Phase…Bahruz Suleymanli, Kutsal Bozkurt, Elias Khan et al.·Mar 25, 2026SaveLearn
Equation of state and cumulants of proton multiplicity in equilibrium near critical point from Pade estimatesThe fluctuations of proton multiplicity in heavy-ion collisions are the key observables in the search for the QCD critical point. In this work we present an approach to constraining the cumulants of…Gokce Basar, Maneesha Pradeep, Mikhail Stephanov·Mar 24, 2026SaveLearn
Hall Viscosity in the Quark-Gluon PlasmaWe study the Hall viscosity of the quark gluon plasma (QGP) created in non-central heavy-ion collisions. In the presence of a strong magnetic field or vorticity, rotational symmetry is broken from…Sukrut Mondkar, Giorgio Torrieri, Matthias Kaminski et al.·Mar 24, 2026SaveLearn
Shape Polarization and Quasiparticle Alignment in the [523]5/2 and [642]5/2 bands of 169HfRotational properties of [523]5/2 (h11/2) and [642]5/2 (i13/2) signature partner bands in 169Hf are investigated using the Total Routhian Surface (TRS) method. Experimental data show a distinct…Rong-Xin Nie, Xue-Hui Ai, Xin Guan et al.·Mar 24, 2026SaveLearn
Production probability of super-heavy nuclei in fusionThe synthesis of super-heavy nuclei (SHN) through fusion reactions is a critical area of nuclear physics, offering insights into nuclear stability and the limits of the periodic table. However,…Ning Wang·Mar 24, 2026SaveLearn
Algebraic Nilsson cranking model and its prediction for 20NePreviously, Nilsson-Ragnarsson solved numerically the conventional cranking model (CCRM3) with deformed oscillator potential and spin-orbit interaction (refer to as Nilsson CCRM3) and predicted the…Parviz Gulshani, Alaaeddine Lahbas·Mar 23, 2026SaveLearn
Electroweak Radiative Corrections to Parity-Violating Electron-Nucleus ScatteringParity-violating electron-scattering provides a largely model independent way of measuring neutron densities in nuclei that has important implications for the structure of nuclei and neutron stars.…Brendan T. Reed, C. J. Horowitz·Mar 23, 2026SaveLearn
S-wave kaon condensation in neutron-star matter within a chiral model framework with dynamical meson massesWe investigate s-wave kaon condensation in dense matter and neutron stars within the updated Chiral Mean Field model with an improved meson description (mCMF), which incorporates dynamically…Yuhan Wang, Rajesh Kumar, Joaquin Grefa et al.·Mar 23, 2026SaveLearn
Lepton Double Charge Exchange Reactions as Probes for Lepton Number ViolationLepton number violating (LNV) A(e-,e+)X double charge exchange (LDCE) reactions on nuclei at accelerator facilities with multi-GeV beams are proposed as a probe for physics beyond the Standard…H. Lenske, F. Cappuzzello, A. Spatafora·Mar 23, 2026SaveLearn
Systematic Cranked Shell Model Calculations for 87, 89, 91BrA systematic investigation of the odd-mass neutron-rich bromine isotopes 87-91Br has been carried out within the configuration-constrained cranked shell model (CSM) framework. The calculated…Nabeel Salim, Mehak Narula, P. Arumugam·Mar 23, 2026SaveLearn
Reaction Studies of Lepton Number ViolationNuclear isotensor spectroscopy as accessible in nuclear double charge exchange (DCE) reactions is indispensable for quantitative studies of lepton number violation as in double beta decay (DBD). For…Horst Lenske·Mar 23, 2026SaveLearn