Development of an accurate formalism to predict properties of two-neutron halo nuclei: case study of 22CWhen moving away from stability or in loosely-bound systems, few-body clusterized structures like two-neutron halo nuclei appear. These emerge from the interplay between the many- and few-body…Patrick McGlynn, Chloë Hebborn·Feb 17, 2026SaveLearn
Bayesian Analyses of Proton Multiple Flow Components in Intermediate Heavy Ion Collisions with Momentum-Dependent InteractionsWe perform a comprehensive Bayesian analyses of Au + Au collision data at 1.23 GeV/nucleon using an isospin-dependent Boltzmann-Uehling-Uhlenbeck transport model that incorporates a…Shuochong Han, Ang Li·Feb 15, 2026SaveLearn
Neural-network quantum states for the nuclear many-body problemA long-standing goal of nuclear theory is to explain how the structure and dynamics of atomic nuclei and neutron-star matter emerge from the underlying interactions among protons and neutrons.…Alessandro Lovato, Giuseppe Carleo, Bryce Fore et al.·Feb 14, 2026SaveLearn
Subleading D-like Three-Nucleon InteractionsWe consider subleading contributions to the three-nucleon force from tree-level diagrams involving a single-pion exchange and a contact interaction between two nucleons, which appear at fifth order…Henri Paul Huesmann, Hermann Krebs, Evgeny Epelbaum·Feb 13, 2026SaveLearn
Nuclear Fragmentation at Intermediate Energies in the DCM-QGSM-SMM ModelThe development of nucleus-nucleus interaction models is a rapidly developing area of heavy-ion physics. Recently, a new model DCM-QGSM-SMM, developed at JINR and oriented toward use within the NICA…M. A. Martemianov, B. M. Abramov, S. A. Bulychjov et al.·Feb 13, 2026SaveLearn
Phase diagrams of BCS-BEC crossover in asymmetric nuclear matterThe phase structure of the BCS-BEC crossover for neutron-proton superfluid in asymmetric nuclear matter is systematically investigated, with particular focus on the roles of the angle-dependent gap…K. D. Duan, X. L. Shang·Feb 13, 2026SaveLearn
MFGSB (ver. 1.0): Computer code for self-consistent mean-field calculations of atomic nuclei using Gaussian expansion methodMFGSB, a computer code for self-consistent mean-field calculations of atomic nuclei using the Gaussian expansion method, is now accessible at Chiba University Repository.H. Nakada·Feb 13, 2026SaveLearn
Dynamical Origin of Spectroscopic Quenching in Knockout ReactionsNucleon-removal reactions are a primary tool for extracting single-particle structure of rare isotopes, yet the ratio Rs=σ/σth of measured to theoretical cross…Jin Lei·Feb 13, 2026SaveLearn
Chiral symmetry restoration and hyperon suppression in neutron starsThe ``hyperon puzzle'' remains a fundamental challenge in nuclear astrophysics. We investigate hyperon emergence in neutron star matter using the SU(3) parity doublet model with chiral…Bikai Gao·Feb 13, 2026SaveLearn
Dark matter effects on the properties of hybrid neutron starsWe study the effects of dark matter on the properties of hybrid neutron stars, in particular the influence on the mass-radius relation, the value of the maximum mass, and the hadron-quark phase…Jin-Biao Wei, G. Wu, H. Chen et al.·Feb 13, 2026SaveLearn
Low-energy 3He(α,γ)7Be reaction within the Skyrme potential frameworkBackground: The 3He(α,γ)7Be reaction plays a crucial role in the proton-proton chain and Big Bang nucleosynthesis, affecting solar neutrino fluxes and primordial…Nguyen Le Anh, Nguyen Gia Huy, Dao Nhut Anh et al.·Feb 12, 2026SaveLearn
Two-Pion Exchange Contributions to the Nucleon-Nucleon Interaction from the Roper ResonanceWe derive the long-range components of the nucleon-nucleon (NN) two-pion-exchange potential with an intermediate Roper resonance. Leading-order interactions in heavy-baryon chiral perturbation theory…Yang Xiao, Li-Sheng Geng, U. van Kolck·Feb 12, 2026SaveLearn
Medium effects on light clusters from heavy-ion collisions within a relativistic mean-field descriptionCentral 136,124Xe+124,112Sn collisions from INDRA data are analysed using a Bayesian inference on light nuclei multiplicities to estimate the thermodynamical parameters and in-medium…Tiago Custódio, Francesca Gulminelli, Alex Rebillard-Soulié et al.·Feb 12, 2026SaveLearn
Partial conservation of seniority in semi-magic nucleiThe concept of seniority plays a central role in nuclear structure physics by classifying many-body states according to the number of unpaired nucleons. While exact seniority conservation holds in…Chong Qi·Feb 11, 2026SaveLearn
Generalized gauge-space rotations in atomic nuclei: A critical insightWe critically reexamine the concepts of pairing rotations and moments of inertia in gauge space extracted from experimental binding energies. Our analysis focuses on pairing correlations among like…Chong Qi, Roberto J. Liotta, Ramon Wyss·Feb 11, 2026SaveLearn
Strong potential in a box for applications to femtoscopyUnderstanding the short-range nucleon-nucleon interaction is essential for the interpretation of correlation femtoscopy measurements in high-energy hadronic and nuclear collisions. We present an…Gleb Romanenko, Francesca Bellini·Feb 11, 2026SaveLearn
Rotation catalyzed chiral magnetovortical instabilityWe demonstrate that a background rotation significantly catalyzes the chiral magnetovortical instability in chiral magnetohydrodynamics. The rotation splits the linearly polarized Alfven wave into…Shuai Wang, Xu-Guang Huang·Feb 11, 2026SaveLearn
Constraining cross sections for unstable 153,159Gd(n,γ) and their astrophysical implicationsNeutron capture (n,γ) cross sections of Gadolinium (Gd) isotopes are critical to astrophysics research, nuclear reactor designs, and medical applications. However, the available (n,γ)…Shu-Tong Zhang, Zhi-Cai Li, Kai-Jun Luo et al.·Feb 11, 2026SaveLearn
Liquid-gas phase transition of nuclear matterA survey is presented summarizing the empirical evidence for and interpretations of a first-order liquid-gas phase transition in nuclear matter. Earlier developments and the present state of…Norbert Kaiser, Wolfram Weise·Feb 10, 2026SaveLearn
Hypernuclear constraints on N and NN interactionsRecent work on using density dependent -nuclear optical potentials in calculations of -hypernuclear binding energies is reviewed. It is found that all known binding…Eliahu Friedman, Avraham Gal·Feb 10, 2026SaveLearn
Three-Body Barrier Dynamics of Double-Alpha Decay in Heavy NucleiThe simultaneous emission of two α particles--double-α decay--represents a long-predicted but unobserved mode of nuclear radioactivity. Here we formulate this process as a genuine…Shulin Tang, Tao Wan, Yibin Qian et al.·Feb 10, 2026SaveLearn
Mean-field proton-neutron pairing correlations with the Gogny D1S energy density functionalWe study proton-neutron pairing correlations within the Hartree-Fock-Bogoliubov (HFB) framework using Gogny-type energy density functionals. By allowing for proton-neutron mixing in the…Miguel de la Fuente, Tomás R. Rodríguez, Luis M. Robledo et al.·Feb 9, 2026SaveLearn
Probing α clustering in 12C at CSR energies using the Jet AA Microscopic Transport ModelWe investigate the sensitivity of low-energy nuclear collisions to intrinsic nuclear structure by studying the interplay between initial-state geometry and final-state observables in C+C and C+Pb…Subhash Singha·Feb 9, 2026SaveLearn
Stochastic many-body perturbation theory for high-order calculationsHigh-order perturbative ab initio calculations are challenging due to the rapidly growing configuration space and the difficulty of assessing convergence. In this letter, we introduce…Xin Zhen, Rongzhe Hu, Junchen Pei et al.·Feb 9, 2026SaveLearn
New solution to the hyperon puzzle of neutron stars: Quantum many-body effectsThe hyperon puzzle refers to the challenge of reconciling the existence of hyperons in neutron star cores and the observed high masses of neutron stars. The recent discovery of PSR J0952-0607…Hao-Fu Zhu, Guo-Zhu Liu, Xufen Wu et al.·Feb 8, 2026SaveLearn