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Bianchi type-III THDE quintessence model with hybrid expansion law

General Physics 2021-08-17 v1

Abstract

The current research investigates the behavior of the Tsallis holographic dark energy (THDE) model with quintessence in a homogeneous and anisotropic Bianchi type-III (B-III) space-time. We construct the model by using two conditions (i) expansion scalar (θ\theta) is proportionate to shear scalar (σ\sigma) in the model and (ii) hybrid expansion law a=tβeγta = t^\beta e^{\gamma t}, where β>0\beta>0, γ>0\gamma>0. Our study is based on Type Ia supernovae (SNIa) data in combination with CMB and BAO observations (Giostri et al, JCAP 3, 27 (2012), arXiv:1203.3213v2[astro-ph.CO]), the present values of Hubble constant and deceleration parameter are H0=73.8H_{0} = 73.8 and q0=0.54q_{0} = -0.54 respectively. Compiling our theoretical models with this data, we obtain β=2.1445 & 2.1154\beta = 2.1445~ \& ~ 2.1154 for γ=0.5 & 1\gamma = 0.5 ~ \& ~ 1 respectively. We have completed a new type of cosmic model for which the expansion occurs to the current accelerated phase for the restraints. We have discussed the conformity among the scalar field model of quintessence and THDE model. To understand the Universe, we have also established the relations for Distance modulus, Luminosity Distance, and Angular-diameter distance. Some geometric and physical aspects of the THDE model are also highlighted.

Keywords

Cite

@article{arxiv.2108.07157,
  title  = {Bianchi type-III THDE quintessence model with hybrid expansion law},
  author = {Gunjan Varshney and Anirudh Pradhan and Umesh Kumar Sharma},
  journal= {arXiv preprint arXiv:2108.07157},
  year   = {2021}
}

Comments

20 pages, 9 figures