English

Exploring the Cosmological Model in $f(R,T^\phi)$ Gravity with Observational Constraints

General Relativity and Quantum Cosmology 2023-08-10 v1

Abstract

We have investigated an isotropic and homogeneous cosmological model of the universe in f(R,Tϕ)f(R, T^{\phi}) gravity, where TϕT^{\phi} is the trace of the energy-momentum tensor and RR is the Ricci scalar. We developed and presented exact solutions of field equations of the proposed model by taking the parametrization q(z)=α+βz1+zq(z) =\alpha + \frac{\beta z}{1+z}, where α\alpha and β\beta are arbitrary constants. The best possible values of the model's free parameters are estimated using the latest observational data sets of OHD, BAO, and Pantheon by applying the MCMC statistical technique. Some kinematic properties like density parameter ρϕ\rho_{\phi}, pressure pϕp_{\phi}, and equation of state parameter ωϕ\omega_{\phi} are derived. We have also discussed the behavior of the scalar potential V(ϕ)V(\phi) in the f(R,Tϕ)f(R, T^{\phi}) gravity theory. The behaviors of scalar fields for quintessence and phantom models are explored. Furthermore, we have discussed the behavior of energy conditions and sound speed in f(R,Tϕ)f(R, T^{\phi}) cosmology.

Keywords

Cite

@article{arxiv.2308.04858,
  title  = {Exploring the Cosmological Model in $f(R,T^\phi)$ Gravity with Observational Constraints},
  author = {Vinod Kumar Bhardwaj and Priyanka Garg},
  journal= {arXiv preprint arXiv:2308.04858},
  year   = {2023}
}

Comments

18 pages, 12 figures