Cosmographic analysis of anisotropic Kaniadakis holographic dark energy model

Author:

Murali K.1ORCID,Aditya Y.2ORCID,Vali S. Kalesha3ORCID

Affiliation:

1. Department of Mathematics, Raghu Engineering College, Vizianagaram 531162, India

2. Department of Mathematics, GMR Institute of Technology, Rajam 532127, India

3. Department of Mathematics, JNTU-GV College of Engineering, Vizianagaram 535003, India

Abstract

In this paper, we investigate the anisotropic and spatially homogeneous Bianchi type-I universe with Kaniadakis holographic dark energy in Saez–Ballester [Phys. Lett. A 113, 467 (1986)] theory of gravitation. We determine Kaniadakis holographic dark energy model by assuming a correlation between the metric potentials to solve the field equations of the model. This results in a dynamical deceleration parameter which demonstrates an accelerating expansion of the universe. Our model’s equation of state parameter [Formula: see text] close to [Formula: see text] ([Formula: see text] model) at late-times and is in agreement with the most recent observations. Next, we obtained the squared sound speed ([Formula: see text]) and found that it is positive, implying stability against perturbations. The [Formula: see text] plane is constructed to investigate the evolution of the models’ EoS parameter turned out to be in a freezing zone. As should be the case in an expanding universe, the strong energy conditions of the model are violated. Statefinders [Formula: see text], and [Formula: see text] planes were also examined. Our model includes the Chaplygin gas, [Formula: see text] limit, and is inclined towards the steady-state model.

Funder

National Board for Higher Mathematics, Department of Atomic Energy, Govt. of India

Publisher

World Scientific Pub Co Pte Ltd

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