English

Unified neutron star EOSs and neutron star structures in RMF models

Nuclear Theory 2022-08-30 v1 High Energy Astrophysical Phenomena

Abstract

In the framework of Thomas-Fermi approximation, we study systematically the EOSs and microscopic structures of neutron star matter in a vast density range with nb1010n_\mathrm{b}\approx 10^{-10}-2 fm3\mathrm{fm}^{-3}, where various covariant density functionals are adopted, i.e., those with nonlinear self couplings (NL3, PK1, TM1, GM1, MTVTC) and density-dependent couplings (DD-LZ1, DDME-X, PKDD, DD-ME2, DD2, TW99). It is found that the EOSs generally coincide with each other at nb104n_\mathrm{b}\lesssim 10^{-4} fm3{}^{-3} and 0.1 fm3nb0.3{}^{-3}\lesssim n_\mathrm{b} \lesssim 0.3 fm3{}^{-3}, while in other density regions they are sensitive to the effective interactions between nucleons. By adopting functionals with larger slope of symmetry energy LL, the curvature parameter KsymK_\mathrm{sym} and neutron drip density generally increase, while the droplet size, proton number of nucleus, core-crust transition density, and onset density of non-spherical nuclei decrease. All functionals predict neutron stars with maximum masses exceeding the two-solar-mass limit, while those of DD2, DD-LZ1, DD-ME2, and DDME-X predict optimum neutron star radii according to the observational constraints. Nevertheless, the corresponding skewness coefficients JJ are much lager than expected, while only the functionals MTVTC and TW99 meet the start-of-art constraints on JJ. More accurate measurements on the radius of PSR J0740+6620 and the maximum mass of neutron stars are thus essential to identify the functional that satisfies all constraints from nuclear physics and astrophysical observations. Approximate linear correlations between neutron stars' radii at M=1.4MM=1.4 M_{\odot} and 2M2 M_{\odot}, the slope LL and curvature parameter KsymK_\mathrm{sym} of symmetry energy are observed as well, which is mainly attributed to the curvature-slope correlations in the functionals adopted here.

Keywords

Cite

@article{arxiv.2208.12893,
  title  = {Unified neutron star EOSs and neutron star structures in RMF models},
  author = {Cheng-Jun Xia and Toshiki Maruyama and Ang Li and Bao Yuan Sun and Wen-Hui Long and Ying-Xun Zhang},
  journal= {arXiv preprint arXiv:2208.12893},
  year   = {2022}
}

Comments

The EOS tables can be found at: teacher.yzu.edu.cn/CJXia/en/lwcg/492393/content/79242.htm

R2 v1 2026-06-25T02:01:13.835Z