English

Strange Quark Stars in 4D Einstein-Gauss-Bonnet Gravity

General Relativity and Quantum Cosmology 2021-03-02 v2

Abstract

The existence of strange matter in compact stars may pose striking sequels of the various physical phenomena. As an alternative to neutron stars, a new class of compact stars called strange stars should exist if the strange matter hypothesis is true. In the present article, we investigate the possible construction of the strange stars in quark matter phases based on the MIT bag model. We consider scenarios in which strange stars have no crusts. Then we apply two types of equations of state to quantify the mass-radius diagram for static strange star models performing the numerical calculation to the modified Tolman-Oppenheimer-Volkoff (TOV) equations in the context of 4D4D Einstein-Gauss-Bonnet gravity. It is worth noting that the GB term gives rise to a non-trivial contribution to the gravitational dynamics in the limit D4D \to 4. However, the claim that the resulting theory is of pure graviton was cast in doubt by several grounds. Thus, we begin our discussion with showing the regularized 4D4D EGB theory has an equivalent action as the novel 4D4D EGB in a spherically symmetric spacetime. We also study the effects of coupling constant α\alpha on the physical properties of the constructed strange stars including the compactness and criterion of adiabatic stability. Finally, we compare our results to those obtained from the standard GR.

Keywords

Cite

@article{arxiv.2006.00479,
  title  = {Strange Quark Stars in 4D Einstein-Gauss-Bonnet Gravity},
  author = {Ayan Banerjee and Takol Tangphati and Phongpichit Channuie},
  journal= {arXiv preprint arXiv:2006.00479},
  year   = {2021}
}

Comments

v2: 16 pages, major modification, regularized 4DEGB scheme added, version accepted for publication by ApJ