English

Compact Astrophysical Objects in $f(R,T)$ gravity

General Relativity and Quantum Cosmology 2018-08-17 v4

Abstract

In this article we study the hydrostatic equilibrium configuration of neutron stars (NSs) and strange stars (SSs), whose fluid pressure is computed from the equations of state p=ωρ5/3p=\omega\rho^{5/3} and p=0.28(ρ4B)p=0.28(\rho-4{\cal B}), respectively, with ω\omega and B{\cal B} being constants and ρ\rho the energy density of the fluid. We also study white dwarfs (WDs) equilibrium configurations. We start by deriving the hydrostatic equilibrium equation for the f(R,T)f(R,T) theory of gravity, with RR and TT standing for the Ricci scalar and trace of the energy-momentum tensor, respectively. Such an equation is a generalization of the one obtained from general relativity, and the latter can be retrieved for a certain limit of the theory. For the f(R,T)=R+2λTf(R,T)=R+2\lambda T functional form, with λ\lambda being a constant, we find that some physical properties of the stars, such as pressure, energy density, mass and radius, are affected when λ\lambda is changed. We show that for some particular values of the constant λ\lambda, some observed objects that are not predicted by General Relativity theory of gravity can be attained. Moreover, since gravitational fields are smaller for WDs than for NSs or SSs, the scale parameter λ\lambda used for WDs is small when compared to the values used for NSs and SSs.

Keywords

Cite

@article{arxiv.1806.04123,
  title  = {Compact Astrophysical Objects in $f(R,T)$ gravity},
  author = {P. H. R. S. Moraes and J. D. V. Arbañil and G. A. Carvalho and R. V. Lobato and E. Otoniel and R. M. Marinho and M. Malheiro},
  journal= {arXiv preprint arXiv:1806.04123},
  year   = {2018}
}

Comments

Invited talk presented at the XIV International Workshop on Hadron Physics, Florian\'opolis, Brazil, March 2018

R2 v1 2026-06-23T02:26:12.077Z