Nanosecond-Scale Proton Emission from Triaxially Deformed Lu-148 Predicted with High Accuracy Qp Value via Novel Bayesian EvaluationThe half-life of the odd-odd deformed proton emitter 148Lu is predicted to be 196-129+420 ns via the Wentzel-Kramers-Brillouin (WKB) approximation, in which the potential is extracted…Lin-Xing Zeng, Qi Lu, Kaiyuan Zhang et al.·Dec 1, 2025SaveLearn
Nuclear modification of heavy flavor decayed dielectrons in relativistic heavy-ion collisionsDielectrons from heavy flavor hadron decays not only constitute a crucial background to their thermal spectrum in high-energy nuclear collisions, from which the temperature of the quark-gluon plasma…Lejing Zhang, Wen-Jing Xing, Shanshan Cao et al.·Dec 1, 2025SaveLearn
Probing the three-body force in hadronic systems with specific charge parityThree-body forces, a type of non-perturbative strong interaction, are widely studied in nuclear physics. However, whether their inclusion is necessary in nuclear systems remains a topic of intense…Ya-Wen Pan, Ming-Zhu Liu, Li-Sheng Geng·Dec 1, 2025SaveLearn
Improved Actions for Nuclear Effective Field TheoriesEffective field theories have been successful in describing nuclei up to the alpha particle but face significant challenges for larger nuclei due to leading-order instabilities. These issues can be…U. van Kolck·Nov 29, 2025SaveLearn
Universal imprinting of short-range correlations in relativistic heavy-ion collisionsProtons and neutrons within atomic nuclei undergo intense and fleeting encounters driven by the strong force at short distances. These interactions generate close-proximity pairs, a phenomenon known…Pei Li, Kai-Jia Sun, Bo Zhou et al.·Nov 28, 2025SaveLearn
Accuracy, asymptotes, and applications of the Born approximations to the calculation of the Mott scattering cross section, the primary atomic displacement cross section, and the energy-loss stragglingThe first, second and third Born approximations of the Mott scattering cross section are considered. The relative error of all three Born approximations averaged by angles and energies is calculated…A. Arkhutsik, P. Kats, O. Voskresenskaya·Nov 28, 2025SaveLearn
Constraining of Nuclear Matter Equations of State With Rotating Neutron StarsNeutron stars can be regarded as natural laboratories that enable us to investigate nuclear matter properties under extreme conditions that are otherwise impossible to access in terrestrial…Hyukjin Kwon, Kazuyuki Sekizawa·Nov 28, 2025SaveLearn
NuclearConfectionery: Multi-stage Simulation Framework for Modeling Relativistic Heavy-ion CollisionsWe present the NuclearConfectionery, a modular framework for simulating the full dynamical evolution of relativistic heavy-ion collisions. Its core hydrodynamic module, CCAKE 2.0, represents a major…Kevin P. Pala, Surkhab Kaur Virk, Dekrayat Almaalol et al.·Nov 28, 2025SaveLearn
Relations between three-particle interactions in nuclear matter to observable quantitiesIn the first part of this paper, we use the framework of the Fermi liquid theory to derive model-independent relations between the slope parameters of the symmetry energy and of the incompressibility…Wolfgang Bentz, Ian C. Cloët·Nov 27, 2025SaveLearn
Characterizing the Neutron Skin of 48Ca Through Collective Flow at the CERN Large Hadron ColliderThe recently developed ``imaging-by-smashing" technique has emerged as a powerful approach to connect final-state collective flow phenomena in ultra-relativistic nuclear collisions with the intrinsic…Andreas Vitsos, Leonora Misciattelli Mocenigo Soranzo, You Zhou·Nov 27, 2025SaveLearn
Study of 0+ and 8- states in even-even 250-260No isotopesLow-lying Kπ=0+ and isomeric 8- states in even-even isotopes 250-260No are explored within the Quasiparticle Random-Phase Approximation (QRPA) method with Skyrme parametrization SLy4.…M. A. Mardyban, V. O. Nesterenko·Nov 27, 2025SaveLearn
Symmetry energy in dilute matter and the neutron skinEnergy density functional (EDF) theory provides a unified framework for the description of nuclei and of infinite nuclear matter. In principle, it facilitates direct connections between nuclear data…Panagiota Papakonstantinou·Nov 27, 2025SaveLearn
Triplet pairing in neutron matter in a comprehensive diagrammatic approachWe apply a large-scale summation of Feynman diagrams, including the class of parquet diagrams plus important contributions outside the parquet class, for calculating effective pairing interactions…Panagiota Papakonstantinou, Eckhard Krotscheck, Jiawei Wang·Nov 27, 2025SaveLearn
A Bottom-Up EFT Approach To Superdense Baryonic MatterHow to arrive at the densest matter in massive compact stars starting from Walecka's linear ω-σ mean-field model is described in a series of arguments anchored on hidden local symmetry,…Mannque Rho·Nov 26, 2025SaveLearn
Deuteron yields near the QCD phase transitionWe investigate the influence of QCD phase transition and critical fluctuations of the critical end point (CEP) on the deuteron yield within the functional renormalization group (fRG) approach, by…Sheng-nan Han, Jing Wu, Yong-rui Chen et al.·Nov 26, 2025SaveLearn
Simultaneous Inference of Effective Range Parameters and EFT Truncation Uncertainty in 3He-α ScatteringWe extend previous halo effective field theory analyses of low-energy elastic scattering of 3He-4He, including the 72- f-wave resonance as an explicit degree of freedom. The…Andrius Burnelis, Daniel R. Phillips·Nov 26, 2025SaveLearn
Anisotropic flows in Au+Au collisions at sNN = 2.4\,GeV with a Skyrme pseudopotentialWithin the framework of the lattice Boltzmann-Uehling-Uhlenbeck transport model, we present a systematic study of proton anisotropic flow observables measured by the HADES collaboration, by utilizing…Xin Li, Si-Pei Wang, Rui Wang et al.·Nov 25, 2025SaveLearn
Discrete non-orthogonal shell model for nuclear structure: Towards heavy elementsWe present recent developments of the Discrete Non-Orthogonal Shell Model (DNO-SM) for nuclear structure studies far from stability. Exact shell-model solutions are obtained for typical open-shell…Duy-Duc Dao, Frédéric Nowacki·Nov 25, 2025SaveLearn
Relaxation of a single-particle excitation in a Fermi system within the diffusion approximation of kinetic theoryThe time evolution of the Wigner distribution function for a single-particle excitation in a Fermi system was studied within the framework of the diffusion approximation of kinetic theory by…Sergiy V. Lukyanov·Nov 24, 2025SaveLearn
The Landau-Migdal parameter and quenching factor from the analysis of the Gamow-Teller strength distributions in medium-heavy-mass doubly-closed-shell parent nucleiThe Landau-Migdal parameter and quenching factor for the Gamow-Teller strength distributions in the 48Ca, 90Zr, 132Sn and 208Pb parent nuclei are deduced from a detailed comparison of experimental…V. I. Bondarenko, M. H. Urin·Nov 24, 2025SaveLearn
Impact of finite-range spin-orbit and tensor terms in Gogny EDFEnergy Density Functionals are of major interest for the study of the atomic nucleus as, coupled with mean-field and beyond N-body approaches, they are applicable to the whole nuclear chart,…G. Zietek, N. Pillet, M. Anguiano et al.·Nov 24, 2025SaveLearn
From Classical to Quantum Machine Learning: Different Approaches in Fission Barrier Height EstimationThe fission barrier energy is a fundamental property of nuclear structure that governs the stability of nuclei against fission, directly affecting their spontaneous fission half-lives and the…Serkan Akkoyun, Cafer Mert Yeşilkanat, Paul Stevenson·Nov 23, 2025SaveLearn
Systematic investigation on the superheavy nucleus formation in the reactions of 48Ca, 50Ti, 51V and 54Cr on actinide nucleiThe synthesis of superheavy elements strongly relies on the competition of the quasifission and fusion fission dynamics in the fusion-evaporation reactions. The systematics on the formation of…Zi-Han Wang, Peng-Hui Chen, Ya-Ling Zhang et al.·Nov 23, 2025SaveLearn
Nuclear structure study with two- and three-nucleon contact interactions derived within low-energy EFTWe present the results of the application of a nuclear potential consisting of two- and three-nucleon contact interactions in nuclear structure investigations. The nuclear Hamiltonian has been…Songlin Lyu, Francesco Amodio, Giovanni De Gregorio et al.·Nov 22, 2025SaveLearn
Quantum and classical analyses of intertwined phase transitions in odd-mass Nb isotopesQuantum phase transitions (QPTs) in odd-mass Nb isotopes are investigated in the framework of the interacting boson-fermion model with configuration mixing. A quantum analysis reveals a Type I QPT…A. Leviatan·Nov 22, 2025SaveLearn