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Mubasher Jamil

Researcher at Zhejiang University of Technology

Publications -  320
Citations -  10850

Mubasher Jamil is an academic researcher from Zhejiang University of Technology. The author has contributed to research in topics: Dark energy & Black hole. The author has an hindex of 58, co-authored 314 publications receiving 9592 citations. Previous affiliations of Mubasher Jamil include National University of Sciences and Technology & L.N.Gumilyov Eurasian National University.

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The generalized second law of thermodynamics in Horava-Lifshitz cosmology

TL;DR: In this article, the authors investigated the validity of the generalized second law of thermodynamics in a universe governed by Horava-Lifshitz gravity and found that it is generally valid for flat and closed geometry and conditionally valid for an open universe.
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Holographic dark energy in Brans–Dicke cosmology with chameleon scalar field

TL;DR: In this paper, a cosmological implication of holographic dark energy in the Brans-Dicke gravity was studied, where the authors employed the holographic model of dark energy to obtain the equation of state for the energy density in non-flat (closed) universe enclosed by the event horizon measured from the sphere of horizon.
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New agegraphic dark energy in Horava-Lifshitz cosmology

TL;DR: In this paper, the authors investigated the new agegraphic dark energy scenario in a universe governed by Horava-Lifshitz gravity, and they considered both the detailed and non-detailed balanced version of the theory and imposed an arbitrary curvature, and allowed for an interaction between the matter and dark energy sectors.
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Interacting hde and nade in brans-dicke chameleon cosmology

TL;DR: In this article, the authors investigated the cosmological applications of interacting holographic dark energy in Brans-Dicke theory with chameleon scalar field which is non-minimally coupled to the matter field.
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Charged Black Holes in Phantom Cosmology

TL;DR: In the classical relativistic regime, the accretion of phantom-like dark energy onto a stationary black hole reduces the mass of the black hole by a narrow limit as mentioned in this paper.