arXiv:2411.06238·v2·Nuclear Theory
Imprints of high-density nuclear symmetry energy on the crustal fraction of neutron star moment of inertia
Abstract
The density dependence of nuclear symmetry energy remains the most uncertain aspect of the equation of state (EOS) of supradense neutron-rich nucleonic matter. Implications of observational crustal fraction of neutron star (NS) moment of inertia on the are examined in the present work, utilizing an isospin-dependent parameterization of NS EOS. We find that symmetry energy parameters significantly influence the , while the EOS of symmetric nuclear matter has a negligible effect. An increase in the slope and skewness of symmetry energy results in a larger , whereas an increase in the curvature leads to a reduction in . Additionally, we discuss the imprints of observational on the symmetry energy for NSs with masses of 1.0 M or 1.4 M. Our results indicate that the has the potential to set a lower limit of symmetry energy at densities exceeding , particularly when is constrained to values less than MeV, thereby enhancing our understanding of supradense NS matter.
Comments: 10 pages, 5 figures, published on Particles