$g$-mode of neutron stars in pseudo-Newtonian gravity
Abstract
The equation of state (EOS) of nuclear dense matter plays a crucial role in many astrophysical phenomena associated with neutron stars (NSs). Fluid oscillations are one of the most fundamental properties therein. NSs support a family of gravity -modes, which are related to buoyancy. We study the gravity -modes caused by composition gradient and density discontinuity in the framework of pseudo-Newtonian gravity. The mode frequencies are calculated in detail and compared with Newtonian and general-relativistic (GR) solutions. We find that the -mode frequencies in one of the pseudo-Newtonian treatments can approximate remarkably well the GR solutions, with relative errors in the order of . Our findings suggest that, with much less computational cost, pseudo-Newtonian gravity can be utilized to accurately analyze oscillation of NSs constructed from an EOS with a first-order phase transition between nuclear and quark matter, as well as to provide an excellent approximation of GR effects in core-collapse supernova (CCSN) simulations.
Keywords
Cite
@article{arxiv.2302.03856,
title = {$g$-mode of neutron stars in pseudo-Newtonian gravity},
author = {Hong-Bo Li and Yong Gao and Lijing Shao and Renxin Xu},
journal= {arXiv preprint arXiv:2302.03856},
year = {2023}
}
Comments
14 pages, 13 figures, 6 tables; accepted by PRD