Meson-exchange currents and nuclear correlations in neutrino and electron scattering with nucleiThis thesis is dedicated to the study of electron and neutrino scattering on nuclei, with special emphasis on meson-exchange currents (MEC) and short-range correlations (SRC) between nucleon pairs in…Paloma Rodríguez Casalé·Jan 26, 2026SaveLearn
The role of the surface energy in nuclear octupole excitationsOctupole excitations of atomic nuclei can be viewed as fluctuations around an equilibrium shape. These fluctuations in turn can be seen as probes of nuclear matter properties to the extent that the…Khlood Alharthi, Paul Stevenson·Jan 25, 2026SaveLearn
"Observations on the possible electromagnetic nature of nucleon interactions and pions" -- historical manuscript from 1969 by B. W. Ninham and C. PaskThis manuscript presents an historical perspective prepared by Barry Ninham and Colin Pask in 1969 on the connection between quantum electrodynamics theory and nucleon interactions. A new theory of…Mathias Boström, Drew F. Parsons·Jan 25, 2026SaveLearn
Basis Representation for Nuclear Densities from Principal Component AnalysisWe develop an efficient method to represent nuclear densities using basis functions extracted via Principal Component Analysis (PCA). Applying PCA to densities of 75 nuclei calculated with the…Chen-Jun Lv, Tian-Yu Wu, Xin-Hui Wu et al.·Jan 24, 2026SaveLearn
Two-body cluster entangled structure in the H1 H2 Hilbert spaceThis study introduces a quantum information perspective to analyze the internal structure of atomic nuclei, focusing on the quantum entanglement between α clusters in the 0+ state of…Fei-Long Xu, Xi-Guang Cao, Yu-Gang Ma·Jan 24, 2026SaveLearn
Quarkyonic matter with strangeness in an extended relativistic mean-field modelQuarkyonic matter is expected to play a key role for the transition from hadronic matter to quark matter in compact stars. Within the framework of the relativistic mean-field (RMF) model and…Wei Sun, Cheng-Jun Xia, Ting-Ting Sun·Jan 24, 2026SaveLearn
Compatibility of recent S=-2 emulsion eventsWe question the compatibility of recent S=-2 hypernuclear assignments of J-PARC E07 --capture emulsion events with assignments deduced from other experiments.Avraham Gal·Jan 23, 2026SaveLearn
Tribute to Tullio Bressani, Bogdan Povh and Toshimitsu YamazakiIn this HYP2025 talk I pay tribute to Tullio Bressani (1940-2024), Bogdan Povh (1932-2024) and Toshimitsu Yamazaki (1934-2025), all of whom made lasting contributions to shaping up Strangeness…Avraham Gal·Jan 23, 2026SaveLearn
Non-Equilibrium Trace Anomaly And Bulk Viscosity in Heavy Ion Collisions From Kinetic TheoryWe investigate the far-from-equilibrium dynamics and transport properties of a relativistic massive gas obeying Maxwell-Boltzmann (MB), Bose-Einstein (BE), and Fermi-Dirac (FD) statistics undergoing…Krishanu Sengupta, Reghukrishnan Gangadharan, Victor Roy·Jan 23, 2026SaveLearn
Nuclear molecule of heavy nucleiThe model of a nuclear molecule that composed of two heavy nuclei is proposed. To this aim the Hamiltonian of a dinuclear system is derived and diagonalized in the basis of bipolar spherical…T. M. Shneidman, R. G. Nazmitdinov·Jan 23, 2026SaveLearn
Analysis of M1 capture in the α(d,γ)6Li reactionAn effective operator is exactly equivalent to the long-wavelength form of the M1 operator in transition matrix elements. It allows us to analytically and numerically analyze the M1 contribution…Ergash M. Tursunov, Daniel Baye·Jan 23, 2026SaveLearn
Ab initio Gamow density matrix renormalization group for broad nuclear many-body resonancesBackground The reach of ab initio theory has greatly increased in recent decades. However, predicting the location of the drip lines remains challenging due to uncertainties in…A. Sehovic, K. Fossez, H. Hergert·Jan 22, 2026SaveLearn
Computational schemes for the Magnus expansion of the in-medium similarity renormalization groupThe in-medium similarity renormalization group (IMSRG) is a popular many-body method used for computations of nuclei. It solves the many-body Schr\"odinger equation through a continuous unitary…Matthias Heinz·Jan 22, 2026SaveLearn
Giant Dipole Resonance and Related Spin-dependent ExcitationsThe time-dependent Hartree-Fock equation is solved by the Wigner Function Moments method taking into account spin degrees of freedom. Energies and reduced transition probabilities of Kπ=0-, 1-…E. B. Balbutsev, I. V. Molodtsova·Jan 22, 2026SaveLearn
Decomposition of angular momentum projected nuclear wave functionAngular momentum projection is a basic technique in constructing nuclear wave functions with good spins. Traditionally, a projected nuclear wave function is expressed in terms of the bases built by…Wen Chen, Zhan-Jiang Lian, Xue-Wei Li et al.·Jan 21, 2026SaveLearn
H dibaryon and its cousins from SU(6)-constrained baryon-baryon interactionWe constrain the S-wave baryon-baryon interaction using SU(6) symmetry within a nonrelativistic effective field theory. The most general leading-order Lagrangian contains two independent…Tao-Ran Hu, Feng-Kun Guo·Jan 21, 2026SaveLearn
Ab initio study of spectroscopic factors in 48K and neighboring N=28 isotonesA recent \(47K(d,pγ)48K\) transfer reaction measurement has identified new excited states in \(48K\) and extracted the corresponding spectroscopic factors…P. Y. Wang, M. R. Xie, Q. Yuan et al.·Jan 21, 2026SaveLearn
How Threshold Effects in Spectroscopic Factors Influence Heavy-Ion Knockout ReactionsA two-decade-old puzzle in heavy-ion one-nucleon knockout reactions is the strong correlation between the reduction factor Rs=σ exp/σ th and the Fermi surface asymmetry…M. R. Xie, J. G. Li, C. A. Bertulani et al.·Jan 21, 2026SaveLearn
Influence of Finite-Nuclei Constraints on High-Density Transitions and Neutron Star PropertiesWe construct posterior distributions of the equation of state (EoS) for matter beyond the inner crust of neutron stars by incorporating finite nuclei (FN) constraints within relativistic mean field…Anagh Venneti, Sarmistha Banik, Bijay K Agrawal·Jan 20, 2026SaveLearn
On the Realization of Quantum State Teleportation in Proton SystemsWe discuss how to generate entangled Bell states of two nucleons using unpolarized nucleon-nucleon scattering or the exclusive deuteron breakup reaction. We follow the the approach of Z. X. Shen et…H. Witala·Jan 20, 2026SaveLearn
Comparative study of quartet superfluid state: Quartet Bardeen-Cooper-Schrieffer theory and generalized Nambu-Gor'kov formalismWe theoretically investigate a quartet superfluid state in fermionic matter by using the quartet Bardeen-Cooper-Schrieffer (BCS) variational theory and the Green's function method. We demonstrate…Yixin Guo, Hiroyuki Tajima, Haozhao Liang·Jan 20, 2026SaveLearn
Pairing correlations, orientations and quantum fluctuations in one- and two-nucleon transfer reactions at sub-barrier energiesThis work investigates one- and two-neutron transfer in the 96Zr + 40Ca reaction at sub-barrier energies using a microscopic framework based on time-dependent covariant…Dandan Zhang, Bo Li, Dario Vretenar et al.·Jan 20, 2026SaveLearn
Superfluid Band Theory for the Rod Phase in the Magnetized Inner Crust Matter: Entrainment, Spin-orbit Coupling, Spin-triplet PairingThe inner crust of neutron stars hosts a rich variety of nuclear phenomena and provides a unique environment for exploring microscopic nuclear properties relevant to diverse astrophysical…Kenta Yoshimura, Kazuyuki Sekizawa·Jan 20, 2026SaveLearn
Numerical study of the two-boson bound-state problem with and without partial-wave decompositionThe validation of numerical methods is a prerequisite for reliable few-body calculations, particularly when moving beyond standard partial-wave decompositions. In this work, we present a precision…Wolfgang Schadow·Jan 19, 2026SaveLearn
Microscopic investigation of magnetic and antimagnetic rotational motion in atomic nucleiIn the present work, we have generalized the projected shell model (PSM) approach to include the quasiparticle excitations from two major oscillator shells, and have also extended the basis space to…W. Tawseef, Nazira Nazir, S. Jehangir et al.·Jan 18, 2026SaveLearn