Study of Cosmic Acceleration and Thermodynamic Consequences in Alternative 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 discuss two interesting issues: the accelerated expansion of the
universe and thermodynamics. We consider flat Friedmann-Robertson-Walker
universe model in alternative theories of gravity like loop quantum cosmology, Dvali-
Gabadaze-Porrati brane world and fractal universe. We use different models of dark
energy like Ricci Gauss-Bonnet dark energy and some latest holographic dark energy
models namely Tsallis, Renyi and Sharma-Mittal holographic dark energy models for
the analysis of both issues. For accelerated expansion of the universe, we examine the
cosmological parameters like effective equation of state parameter, deceleration
parameter, statefinder parameters, Om-diagnostic, plane of effective equation of state
parameter with its evolutionary parameter and squared speed of sound parameter. We
investigate the validity of the generalized second law of thermodynamics and
thermodynamical equilibrium for the case of thermodynamic analysis.
Firstly, we consider loop quantum cosmology and fractal universe in flat
FRW universe with an interacting scenario between a non-canonical scalar field
model of dark energy and dark matter. We make the analysis by using constant and
variable (CPL parametrization) forms of equation of state parameters. We discuss the
deceleration parameter for expansion rate along with squared speed of sound for
stability analysis. Taking Bekenstein, logarithmic and power law entropies as the
horizon entropy, we examine generalized second law of thermodynamics and thermal
equilibrium.
Secondly, we study the cosmological implications using Tsallis, Renyi and Sharma-
Mittal holographic dark energy models in the interacting framework. We take into
account two theories, fractal and Dvali-Gabadaze-Porrati brane world. We discuss the
cosmological parameters and planes in both theories for the evolving universe.
Finally, we examine the validity of generalized second law of thermodynamics of a
physical system enveloped by apparent as well as event horizons. The system is
comprised of Ricci Gauss-Bonnet dark energy and dark matter. We use various forms
of entropy namely Bekenstein, Renyi, logarithmic and power law entropy corrections.
We also examine the thermodynamic equilibrium in case of each entropy.
Description
Keywords
Dr. Abdul Jawad, Fa14, Department of Mathematics, Mathematics