Anisotropic Stellar Models in Matter Coupled Teleparallel Modified f(T; T ) Gravity
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Date
2021
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Library Information Services COMSATS University Islamabad Lahore Campus
Abstract
Since the last decade, the expansion of the universe has been a major issue of
debate. It was recently debated under topics like as the radiation era (early-time
expansion), also known as the inflationary (rapid expansion) era, and the latetime
cosmic expansion (dark energy) period. In this thesis, we concentrate on
the study of anisotropic stars with anisotropic matter distribution in the framework
of f(T; T ) = _T(r)2 + _T (r) model, here _, _ are represent the arbitrary
constants, T and T represent, trace of stress energy-momentum tensor and torsion
scalar, respectively. This model has interesting cosmological properties,
in addition to providing an effective dark energy sector explanation [13]. In
order to attain our target, we considered the Krori-Barua space-time and utilize
the off-diagonal tetrad components for deriving the corresponding set of
field equations. We evaluate the effective density (_eff ), effective radial (peff
r )
and tangential pressure (peff
t ) using the EoS of strange star i.e., MIT bag model
pr(r) = 1
3 [_(r) 4Bg]. In chapter IV we explored anisotropic strange stars by
applying karmarker condition without MIT bag model in the background of
"f(T; T )" gravity and for the unknown constants aries in the solution have been
evaluated by using the conventional matching of interior and exterior space
time. Now for checking the feasibility of our model we discuss the anisotropy,
energy condition, TOV forces, abreu condition, EoS parameters, adiabatic index,
mass function, compactness and redshift for different compact stars models
namely, PSRJ1416 2230, 4U1608 52, CenX 3, EXO1785 248 and
x
SMCX 1.
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Dr. Muhammad Zubair, fa19, Mathematics, Department of Mathematics, Anisotropic Stellar