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Reconstruction of cosmic history from a simple parametrization of H

TLDR
In this article, a simple parametrization of the Hubble parameter H is proposed to explain the late time cosmic acceleration, which can give rise to interesting cosmological phenomena such as big rip singularity, bounce and others.
Abstract
In this paper, we propose a simple parametrization of the Hubble parameter H in order to explain the late time cosmic acceleration. We show that our proposal covers many models obtained in different schemes of parametrization under one umbrella. We demonstrate that a simple modification in the functional form of Hubble parameter can give rise to interesting cosmological phenomena such as big rip singularity, bounce and others. We have also constrained the model parameters using the latest 28 points of H(z) data for three cases which admit transition from deceleration to acceleration.

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Journal ArticleDOI

Bouncing cosmology in f (R ,T ) gravity

TL;DR: In this article, a cosmological model with a specific form of the Hubble parameter is constructed in a flat homogeneous, and isotropic background in the framework of $f(R,T)$ gravity, where R$ is the scalar curvature and T$ is a trace of the stress energymomentum tensor.
Posted Content

Einstein and Beyond: A Critical Perspective on General Relativity

TL;DR: An alternative approach to Einstein's theory of General Relativity (GR) is reviewed, which is motivated by a range of serious theoretical issues inflicting the theory, such as the cosmological constant problem, presence of non-Machian solutions, problems related with the energy-stress tensor $T^{ik}$ and unphysical solutions as discussed by the authors.
Journal ArticleDOI

Analysis with observational constraints in $ \Lambda $-cosmology in $f(R,T)$ gravity

TL;DR: In this paper, an exact cosmological solution of EFEs is derived for a dynamical vacuum energy in $f(R,T)$ gravity for Friedmann-LemaitreRobertson-Walker (FLRW) space-time.
Journal ArticleDOI

A periodic varying deceleration parameter in $f(R,T)$ gravity

TL;DR: In this article, a modified gravity theory known as $f(R,T)$ gravity (where R$ is the Ricci scalar and T is the trace of the energy momentum tensor of the matter content) is explored.
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