English

Bianchi type-I Barrow holographic dark energy model in symmetric teleparallel gravity

General Relativity and Quantum Cosmology 2023-02-03 v2

Abstract

In this work, we have discussed a spatially homogeneous and anisotropic Bianchi type-I space-time in the presence of Barrow holographic dark energy (infrared cut-off is the Hubble's horizon) proposed by Barrow recently (Physics Letters B 808 (2020): 135643) and matter in the framework of f(Q)f(Q) gravity where the non-metricity QQ is responsible for the gravitational interaction for the specific choice of f(Q)=λQ2f(Q)=\lambda Q^{2} (where λ<0\lambda <0 is a constant). To find the exact solutions to the field equations we consider the deceleration parameter qq is a function of the Hubble's parameter HH i.e. q=bnHq=b-\frac{n}{H} (where bb and nn are constants). We have studied the physical behavior of important cosmological parameters such as the EoS parameter, BHDE and matter density, skewness parameter, squared sound speed, and ωBωB\omega _{B}-\omega _{B}^{^{\prime }} plane. Also, we constrain the values of the model parameters bb and nn using 5757 Hubble's parameter measurements.

Keywords

Cite

@article{arxiv.2203.08181,
  title  = {Bianchi type-I Barrow holographic dark energy model in symmetric teleparallel gravity},
  author = {M. Koussour and S. H. Shekh and M. Bennai},
  journal= {arXiv preprint arXiv:2203.08181},
  year   = {2023}
}

Comments

IJMPA accepted version