English

Exploring accelerated expansion in the universe: A study of $f(Q,T)$ gravity with parameterized EoS and cosmological constraints

Cosmology and Nongalactic Astrophysics 2024-05-17 v1

Abstract

The study conducted in this research paper utilizes the f(Q,T)f(Q,T) gravity, where QQ represents non-metricity and TT represents the trace of the energy-momentum tensor, to investigate the accelerated expansion of the universe. To complete the study, an effective EoS with one parameter α\alpha, is parameterized as ωeff=3α(1+z)3+3\omega _{eff}=-\frac{3}{\alpha (1+z)^{3}+3}. The linear version of f(Q,T)=Q+σTf(Q,T)=-Q+\sigma T is also considered, where σ\sigma is a constant. By constraining the model with six BAO points, 57 Hubble points, and 1048 Pantheon sample datasets, the parameters α\alpha and σ\sigma are determined to best match the data. The cosmological parameters and energy conditions for the model are derived and examined. The results show that the model is in good agreement with observations, and can serve as a valuable starting point for analyzing FLRW models in the f(Q,T)f(Q,T) theory of gravity.

Keywords

Cite

@article{arxiv.2404.14120,
  title  = {Exploring accelerated expansion in the universe: A study of $f(Q,T)$ gravity with parameterized EoS and cosmological constraints},
  author = {M. Koussour and N. Myrzakulov and J. Rayimbaev and A. Errehymy and Orhan Donmez},
  journal= {arXiv preprint arXiv:2404.14120},
  year   = {2024}
}

Comments

Chinese Journal of Physics accepted version