English

Anisotropic quark stars in $f(R,L_m,T)$ gravity

General Relativity and Quantum Cosmology 2024-12-05 v3

Abstract

We investigate the impact of f(R,Lm,T)f(R,L_m,T) gravity on the internal structure of compact stars, expecting this theory to manifest prominently in the high-density cores of such stars. In this study, we begin by considering the algebraic function f(R,Lm,T)=R+αTLmf(R,L_m,T) = R + \alpha T L_m, where α\alpha represents the matter-geometry coupling constant. We specifically choose the matter Lagrangian density Lm=ρL_m= -\rho to explore compact stars with anisotropic pressure. To this end, we employ the MIT bag model as an equation of state. We then numerically solve the hydrostatic equilibrium equations to obtain mass-radius relations for quark stars, examining static stability criteria, the adiabatic index, and the speed of sound. Finally, we use recent astrophysical data to constrain the coupling parameter α\alpha, which may lead to either larger or smaller masses for quark stars compared to their counterparts in general relativity.

Keywords

Cite

@article{arxiv.2404.01970,
  title  = {Anisotropic quark stars in $f(R,L_m,T)$ gravity},
  author = {Takol Tangphati and Izzet Sakalli and Ayan Banerjee and Anirudh Pradhan},
  journal= {arXiv preprint arXiv:2404.01970},
  year   = {2024}
}

Comments

The manuscript has been accepted for publication in Chinese Physics C. The manuscript comprises 12 pages and 7 figures