English

Effects of $f (R, G)$ gravity on anisotropic charged compact objects

General Relativity and Quantum Cosmology 2023-08-22 v2 High Energy Physics - Theory

Abstract

The present study provides an in-depth analysis of the anisotropic matter distribution and various physical aspects of compact stars in the context of a f(R,G)f(R,G)-gravity framework. In order to gain an exhaustive understanding of these aspects, our study focuses on three particular compact stars: VELA X-1 (CS1), SAXJ1808.4-3658 (CS2), and 4U1820-30 (CS3). We conducted calculations on the relevant characteristics of these compact stars by employing three different models of f(R,G)f(R,G)-gravity. As a convenient approach, the f(R,G)f(R,G)-gravity is organized into two distinct components, which include f1(R)f_1(R) and f2(G)f_2(G). The RR dependent component is modeled similarly to the Hu-Sawicki approach, while for modeling the GG dependent component, we chose logarithmic and power law-like approaches and suggested three viable gravity models. Graphical methods are used to analyze the physical properties of the compact stars in the domain of suggested models of gravity.

Keywords

Cite

@article{arxiv.2305.03064,
  title  = {Effects of $f (R, G)$ gravity on anisotropic charged compact objects},
  author = {M. Ilyas and A. R. Athar and F. Khan and Asma Anfal},
  journal= {arXiv preprint arXiv:2305.03064},
  year   = {2023}
}

Comments

texts modified, typos corrected, version accepted for publication/published in Physica Scripta