Barrow Holographic Dark Energy in Extended Teleparallel Theories of Gravity
No Thumbnail Available
Files
Date
2021
Journal Title
Journal ISSN
Volume Title
Publisher
Library Information Services, COMSATS University Islamabad, Lahore Campus
Abstract
In this thesis, we reconstruct some solutions in the context of telepar-
allel based extended theories coupled with trace of energy-momentum ten-
sor, boundary term and Gauss-Bonnet term. For this purpose, we ob-
tain the effective energy density and pressure for these theories for flat
FRW universe model. The reconstruction is made through the compari-
son of these effective energy densities with the energy density of Barrow
holographic dark energy model. In this regards, we use scale factor in
terms of power-law form and find some gravitational Lagrangian functions
as f(T ) = T +g(T ), f(T, τ ) = T +γh(τ ), f (T, τ ) = βτ +g(T ), f(T, TG) =
TGg(T ), f(T, TG) = −T + TGg(T ), f(T, TG) = TG + g(T ), f(T, TG) =
T + j(TG), f(T, B) = T + σy(B) and f(T, B) = B + ξg(T ). In order to
discuss the cosmic analysis related to these models, we plot equation of
state parameter for each model. We investigate the squared speed of sound
parameter for these models to determine the stability of the models. We
obtain some favorable results related to specific values of model parameters.
Description
Keywords
Department of Mathematics, FA19, Mathematics, Barrow Holographic Dark Energy, Teleparallel Gravity, Dr. Shamaila Rani