Cosmological Implications of the Generalized Entropy Based Holographic Dark Energy Models in Dynamical Chern-Simons Modified Gravity

Author:

Younas M.1,Jawad Abdul1ORCID,Qummer Saba1,Moradpour H.2ORCID,Rani Shamaila1ORCID

Affiliation:

1. Department of Mathematics, COMSATS University Islamabad, Lahore Campus-54000, Pakistan

2. Research Institute for Astronomy and Astrophysics of Maragha (RIAAM), P.O. Box 55134-441, Maragha, Iran

Abstract

Recently, Tsallis, Rényi, and Sharma-Mittal entropies have widely been used to study the gravitational and cosmological setups. We consider a flat FRW universe with linear interaction between dark energy and dark matter. We discuss the dark energy models using Tsallis, Rényi, and Sharma-Mittal entropies in the framework of Chern-Simons modified gravity. We explore various cosmological parameters (equation of state parameter, squared sound of speed ) and cosmological plane (ωd-ωd, where ωd is the evolutionary equation of state parameter). It is observed that the equation of state parameter gives quintessence-like nature of the universe in most of the cases. Also, the squared speed of sound shows stability of Tsallis and Rényi dark energy model but unstable behavior for Sharma-Mittal dark energy model. The ωd-ωd plane represents the thawing region for all dark energy models.

Funder

Research Institute for Astronomy & Astrophysics of Maragha

Publisher

Hindawi Limited

Subject

Nuclear and High Energy Physics

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