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An Accelerating Cosmological Model from a Parametrization of Hubble Parameter

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TLDR
In this paper, a dark energy cosmological model is revisited wherein the cosmology constant of the EFE is considered as a candidate of dark energy and the solution procedure is adopted in a model independent way.
Abstract
In view of late-time cosmic acceleration, a dark energy cosmological model is revisited wherein Einstein's cosmological constant is considered as a candidate of dark energy. Exact solution of Einstein field equations (EFEs) is derived in a homogeneous isotropic background in classical general relativity. The solution procedure is adopted, in a model independent way (or the cosmological parametrization). A simple parametrization of the Hubble parameter (H) as a function of cosmic time `t' is considered which produces an exponential type of evolution of the scale factor (a) and also shows a negative value of deceleration parameter at the present time with a signature flip from early deceleration to late acceleration. Cosmological dynamics of the model obtained have been discussed illustratively for different phases of the evolution of the universe. The evolution of different cosmological parameters are shown graphically for at and closed cases of Friedmann-Lemaitre-Robertson-Walker (FLRW) space-time for the presented model (open case is incompatible to the present scenario). We have also constrained our model parameters with the updated (36 points) observational Hubble dataset.

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Quintessence or phantom: Study of scalar field dark energy models through a general parametrization of the Hubble parameter

TL;DR: In this paper , the authors proposed a simple general parametrization scheme of the Hubble parameter for the scalar field dark energy models, which is possible to incorporate both the quintessence and phantom scalar fields in a single analytical scheme and write down relevant cosmological parameters.
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Tilted universe with big rip singularity in Lyra geometry

TL;DR: In this paper, the authors examined tilted cosmological models by using conformally flat space-time with wet dark fluid in Lyra geometry in order to solve the field equations.
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Corrected holographic dark energy with power-law entropy and Hubble Horizon cut-off in FRW Universe

TL;DR: In this article , the authors investigated the power-law entropy corrected holographic dark energy (PLECHDE) model with Hubble horizon cutoff, and they used 46 observational Hubble data points in the redshift range 0≤z≤2.
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Tilted cosmological models in f ( T ) theory of gravity

TL;DR: In this article, the authors presented tilted cosmological models in f(T) theory of gravity, where T is the torsion scalar, and solved the set of highly nonlinear equation with the help of special law of variation of Hubble's parameter, proposed by Berman, that yields constant deceleration parameter model of universe.
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Accelerating dark energy universe with LRS Bianchi type-I space-time

TL;DR: In this paper, the main purpose of the paper is to investigate LRS Bianchi type I metric in the presence of perfect fluid and dark energy, in order to obtain a deterministic solution of the field equations.
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