PaperPanorama

Nuclear Theory·nucl-th

Friday·August 15, 2025

9 papers2 primary·7 cross-listed

  1. 01

    Triaxial relativistic Hartree-Bogoliubov theory in continuum for exotic nuclei

    Kaiyuan Zhang · Shuangquan Zhang · Jie Meng

    A triaxial relativistic Hartree-Bogoliubov theory in continuum (TRHBc) has been developed to incorporate triaxial deformation, pairing correlations, and continuum effects in a fully microscopic and self-consistent way, aiming for a reliable description of triaxial exotic nuclei with extreme neutron-to-proton ratios. The TRHBc formalism is presented in detail, and its numerical implementation is benchmarked against the results from the axially deformed relativistic Hartree-Bogoliubov theory in continuum and the TRHB theory in harmonic oscillator expansion. The TRHBc theory is applied to investigate the aluminum isotopes systematically, and the available data are well reproduced for the binding energies, one- and two-neutron separation energies, and charge radii. The nuclei near the one-neutron drip line, Al and Al, are found to be triaxially deformed with one-neutron separation energies below 1 MeV. Possible neutron halos in the triaxial nuclei Al and Al are explored by examining the single-particle levels around the Fermi surface, including their composition and contribution to the total neutron density. The existence of neutron halos in Al and Al is also supported by the halo scale, which is comparable to other halo nuclei well-established previously. More importantly, the mechanism for the halo formation in Al is revealed to be the triaxial deformation, which results in the decoupling of the halo orbitals from those of the core.

    nucl-thnucl-exPRC(2025)·11 citations
  2. 02

    Ab initio computations of the fourth-order charge density moments of Ca and Pb

    T. Miyagi · M. Heinz · A. Schwenk

    Neutron skins of neutron-rich nuclei connect nuclei with the matter in neutron stars. High-precision measurements of nuclear charge densities to extract higher-order moments are proposed to be sensitive to neutron radii and skin thicknesses. We investigate the charge density of Ca and Pb, leading candidates for such studies, with ab initio nuclear structure calculations. We find strong correlations between the fourth-order charge density moment and the charge and neutron radii, allowing us to predict for Ca and Pb. We find a substantially weaker correlation between the fourth-order charge density moment and the neutron skin, limiting the ability of high-precision electron scattering to determine the neutron skin in a model-independent manner.

    nucl-thnucl-exPLB(2026)·10 citations

Affiliations

first authorsco-authorsvia INSPIRE