English

EDSFD parametrization in $ f(R,T) $ gravity with linear curvature terms

General Relativity and Quantum Cosmology 2024-04-30 v2

Abstract

This paper investigates the flat Friedmann-Lemaı^\hat{\imath}tre-Robertson-Walker (FLRW) cosmological model using a suitable parameterization represented as a differential equation concerning the energy density of the scalar field, ρϕ\rho_{\phi}, in the context of f(R,T)f(R,T) gravity theory. This parameterization is known as the Energy Density Scalar Field Differential Equation (EDSFD) parametrization. It results in a solution of the Hubble parameter containing four model parameters, namely, Ωm0,Ωϕ0,H0,\Omega_{m0},\Omega_{\phi 0}, H_0, and α\alpha. To constrain the model parameters, 7777 data points from the Hubble dataset, 10481048 points from the Pantheon dataset, and 66 data points from BAO are used. Using the constrained values, we analyze and compare our model with the standard Λ\LambdaCDM model. The evolution of the physical parameters, which includes the deceleration parameter, density parameter, Equation of State (EoS) for Dark Energy, and Om(z)Om(z) diagnostic, are discussed.

Keywords

Cite

@article{arxiv.2311.11926,
  title  = {EDSFD parametrization in $ f(R,T) $ gravity with linear curvature terms},
  author = {J. K. Singh and Shaily and Harshna Balhara and Sushant G. Ghosh and Sunil D. Maharaj},
  journal= {arXiv preprint arXiv:2311.11926},
  year   = {2024}
}

Comments

16 pages, 18 figures