Search Results - "Bhupendra Kumar Shukla"
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A Transition Model in f(R,T) Theory via Observational Constraints
Published in Symmetry (Basel) (01-04-2023)“…A particular form of the time-dependent deceleration parameter is used to examine the accelerated expansion of the universe and the phase transition in this…”
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FLRW Cosmological Models with Dynamic Cosmological Term in Modified Gravity
Published in Universe (Basel) (01-09-2021)“…Although the standard lambda cold dark matter cosmological model is quite successful in describing the universe, there are still several issues that are still…”
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FLRW Universe in f(R,Lm) Gravity with Equation of State Parameter
Published in East European journal of physics (02-12-2023)“…Available observational data regarding current cosmological characteristics suggest that the universe is, to a large extent, both isotropic and homogeneous on…”
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A cosmological model in f(G,T) gravity with time varying deceleration parameter
Published in Astrophysics and space science (01-10-2023)“…The current study aims at investigating a modified theory of gravity called f ( G , T ) theory. Our focus is on a Gauss-Bonnet cosmological model that…”
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A Transition Model in If/I Theory via Observational Constraints
Published in Symmetry (Basel) (01-03-2023)“…A particular form of the time-dependent deceleration parameter is used to examine the accelerated expansion of the universe and the phase transition in this…”
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Bianchi Type-I Universe in Modified Theory of Gravity
Published in Physical sciences forum (01-02-2023)“…In this paper, we have studied an anisotropic Bianchi-I cosmological model in f(R,T) gravity. To obtain the exact solutions of the field equations, we have…”
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Quintessences Universe in $f(R, L_m)$ gravity with special form of deceleration parameter
Published 15-06-2023“…In this paper We have investigated a homogeneous and isotropic FRW cosmological model with perfect fluid in the framework of $f(R,Lm)$ gravity. We have…”
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Quintessence phase of the late-time Universe in $f(Q,T)$ gravity
Published 07-11-2024“…In this paper, we have studied the late-time accelerating expansion of the Universe using the matter-geometry coupled $ f(Q, T) $ gravity model, where $ Q $ is…”
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