Long-lived opposite-parity states and the onset of octupole collectivity in atomic nucleiOctupole deformation in atomic nuclei is of interest for both nuclear structure and precision tests of fundamental symmetries, but identifying regions of octupole collectivity remains challenging. We…Bui Minh Loc, Hoang Thai An, Nguyen Le Anh et al.·Aug 10, 2026SaveLearn
Hadron-quark phase transitions along proto-neutron-star evolutionThe new era of multi-messenger astronomy requires the accurate and self-consistent derivation of the nuclear equation of state at high temperature. In the present work, we focused on the calculation…P. Laskos-Patkos, P. S. Koliogiannis, Ch. C. Moustakidis·Aug 10, 2026SaveLearn
Large Amplitude Collective Motion and Dissipation in the Ground State and the First Isomeric Wells in the Neutron-Induced Fission of 235UIn fission induced by low energy neutrons, the mother nucleus spends a significant fraction of the time in the ground state and isomer wells, eventually passing beyond the outer barrier, where the…Ibrahim Abdurrahman, Matthew Kafker, Aurel Bulgac et al.·Aug 9, 2026SaveLearn
White dwarf-neutron star matter transition and the effect of light elementsWhite dwarfs and neutron stars are unique laboratories for dense nuclear matter physics. We develop a single relativistic mean-field framework that treats both classes of compact star, and the…Yao Ma, Yong-Liang Ma, Ruo-Xi Wu et al.·Aug 9, 2026SaveLearn
On three-cluster resonance structure of hypernuclei Λ7He, Λ7Li and Λ7BeThe bound and resonance states of hypernuclei Λ7He, Λ7Li and Λ7Be are studied within a three-cluster model. Within this model, hypernuclei Λ7He, Λ7Li and Λ7Be…N. K. Kalzhigitov, S. Amangeldinova, V. O. Kurmangaliyeva et al.·Aug 8, 2026SaveLearn
Microscopic description of the fission process including intrinsic excitations. Part III: 240Pu fission dynamics along 1D asymmetric paths within the Schrodinger Collective Intrinsic ModelThis last article of the trilogy focuses on the dynamical equation of the Schrodinger Collective-Intrinsic Model (SCIM). First, we motivate and discuss the need to regularize the adiabatic and…P. Carpentier, N. Pillet, R. N. Bernard et al.·Aug 7, 2026SaveLearn
Microscopic description of the fission process including intrinsic excitations. Part II: 240Pu excited and asymmetric fission paths within the Schrodinger CollectiveThis second article of the trilogy presents the implementation of a third protocol, referred to as Continuous Deflation, designed to construct continuous and regular excited paths within the…P. Carpentier, N. Pillet, R. N. Bernard et al.·Aug 7, 2026SaveLearn
Microscopic description of the fission process including intrinsic excitations. Part I: 240Pu adiabatic and asymmetric fission path within the Schrodinger Collective Intrinsic ModelThis article is the first in a trilogy aimed at presenting the first practical implementation of the Schrodinger Collective-Intrinsic Model (SCIM) applied to nuclear fission. Within the SCIM…P. Carpentier, N. Pillet, R. N. Bernard et al.·Aug 7, 2026SaveLearn
Quantum simulation of bottomonium dynamics in the quark-gluon plasma via the Lindblad equationQuantum computing provides a powerful framework for simulating real-time dynamics in open quantum systems, offering key advantages for modeling heavy-quarkonium transport in high-energy nuclear…Linyuan Wei, Jin Hu, Anping Huang et al.·Aug 7, 2026SaveLearn
Laboratory-frame T-matrix and heavy quark drag in the quark-gluon plasmaNon-perturbative scattering T-matrix is a core input for the evaluation of transport phenomena in a strongly-coupled medium. Existing in-medium T-matrix calculations are typically formulated in…Anurag Tiwari, Min He·Aug 7, 2026SaveLearn
Quark matter at finite temperature and proto-quark stars with the axion effects in SU(3) Nambu-Jona-Lasinio modelWe investigate the thermodynamical properties of strange quark matter (SQM) and proto-quark stars (PQSs) within the SU(3) Nambu-Jona-Lasinio (NJL) model at finite temperature, specifically…Peng-Cheng Chu, Jiao-Jiao Wang, Ke Liu et al.·Aug 7, 2026SaveLearn
Towards compressed baryonic matter densities: thermodynamics and transport coefficientsWe study the thermodynamic and transport properties of hot and dense quantum chromodynamic matter expected to be produced in low-energy heavy-ion collisions, using three different effective quantum…Anand Rai, Dani Rose J Marattukalam, Prasanta Murmu et al.·Aug 7, 2026SaveLearn
Analysis of the strengths of the contact potential at N4LO through nuclear and neutron matterWe examine the contact three-nucleon force at N4LO expressed as a density dependent potential. In Ref. [1], the necessary couplings (13, including two that appear in the leading three-nucleon force),…Francesca Sammarruca, Tomiwa Ajagbonna·Aug 6, 2026SaveLearn
Momentum Distributions and Spatial Signatures of Proton Halos in the sd ShellWe perform a theoretical study of intermediate-energy quasifree one-proton knockout reactions on proton targets. Single-particle wave functions constrained by the experimental proton separation…Taslima S. C. Diba, Carlos A. Bertulani, Ronaldo V. Lobato·Aug 6, 2026SaveLearn
Reconstructability and directed flow of short-lived resonances in Au+Au collisions at 19.6 and 200 GeVWe present a systematic study of the reconstructability and directed flow of hadronic resonances in Au+Au collisions within the UrQMD transport model. The main objective of this work is to…Junyi Han, Xialei Jiang, Hongcan Li et al.·Aug 6, 2026SaveLearn
Benchmarking electromagnetic observables in angular-momentum projected Hartree-FockWe benchmark electromagnetic transitions and moments (electric quadrupole and magnetic dipole) in angular-momentum projected-after-variation Hartree-Fock calculations against full…Raul Bernal-Gonzalez, Calvin W. Johnson·Aug 6, 2026SaveLearn
TITAN mass measurements of neutron-rich Cs, Ba and r-process lanthanide abundancesWe present measurements for the masses of five neutron-rich isotopes, 149-151Cs and 151, 152Ba, probed for the first time by TITAN at TRIUMF with time-of-flight measurement techniques. We…T. -H. Yeh, J. D. Cardona, Y. Wang et al.·Aug 5, 2026SaveLearn
Intruder-driven mirror energy differences between 29Cl and 29Mg studied with antisymmetrized molecular dynamicsTo clarify the mirror energy differences (MEDs) of the proton-unbound nucleus 29Cl and their microscopic origins, we investigate the low-lying states of the 29Cl-29Mg mirror pair using…Dae Ik Kim, Masaaki Kimura, Chang-Hwan Lee et al.·Aug 5, 2026SaveLearn
On the Possibility of a Strong First-Order Phase Transition in Neutron StarsWhether cold dense QCD matter undergoes a strong first-order phase transition remains an open question. In nature, neutron stars provide the most direct probe of cold dense QCD matter. Theoretically,…Zheng Cao, Lie-Wen Chen·Aug 5, 2026SaveLearn
How long can a non-spherical quantum object remain standing ? - a fundamental quantum question -An isolated quantum system generally exhibits rotational symmetry, i.e., conserved spin (angular momentum) in its eigenstates. Non-spherical quantum objects such as many of molecules and atomic…Takaharu Otsuka, Yusuke Tsunoda·Aug 5, 2026SaveLearn
Relativistic distorted-wave analysis of the missing-energy spectrum measured with monochromatic νμ-12C interactions at JSNS2Recently, the JSNS2 collaboration measured for the first time the missing-energy distribution of 12C using a monochromatic neutrino beam coming from kaon decays at rest. In this work we…J. M. Franco-Patino, J. García-Marcos, V. Belocchi et al.·Aug 5, 2026SaveLearn
Dilated coordinate method for solving nuclear lattice effective field theoryWe introduce a dilated coordinate method to address computational challenges in nuclear lattice effective field theory (NLEFT) for weakly-bound few-body systems. The approach employs adaptive mesh…Guangzhao He, Zhenyu Zhang, Teng Wang et al.·Aug 5, 2026SaveLearn
Observation of renormalization group invariance in symmetry-restored nuclear lattice effective field theoryRenormalization group (RG) invariance implies that the predictions of effective field theory are independent of the momentum cutoffs introduced during regularization. Here we report the first…Jia-Ai Shi, Chen-Can Wang, Bing-Nan Lu·Aug 5, 2026SaveLearn
Local Spin Polarization in Anisotropic Gubser Flow: Suppression Mechanism and Formulation DependenceWe analytically study the longitudinal spin polarization in relativistic heavy-ion collisions using a perturbed Gubser flow solution. In the large-system-size limit, we derive analytical expression…Kenji Fukushima, Shi Pu, Dong-Lin Wang·Aug 4, 2026SaveLearn
Constructing Effective Interactions via Projection-Based InversionWe present a numerical prescription for extracting continuum scattering information from discrete spectra by constraining effective interactions inspired by effective field theory (EFT). Using a…Hang Yu, Serdar Elhatisari, Sebastian König et al.·Aug 4, 2026SaveLearn