activity
20222025
most citedComplexity and Isotropization based Extended Models in the context of Electromagnetic Field: An Implication of Minimal Gravitational Decoupling

84 citations · 651 across the 19 of their papers we have counts for

collaborators

18 papers

gr-qc202533 cited

Physical validity of anisotropic models derived from isotropic fluid dynamics in theory: An implication of gravitational decoupling

Tayyab Naseer, G. Mustafa

In this paper, we derive multiple anisotropic analogs from the established isotropic model by means of the gravitational decoupling approach in a fluid-geometry interaction based t…

gr-qc202584 cited

Complexity and Isotropization based Extended Models in the context of Electromagnetic Field: An Implication of Minimal Gravitational Decoupling

Tayyab Naseer

This paper formulates three different analytical solutions to the gravitational field equations in the framework of Rastall theory by taking into account the gravitational decoupli…

gr-qc202429 cited

Decoupled Anisotropic Buchdahl's Relativistic Models in Theory

Tayyab Naseer, M. Sharif

This paper constructs three different anisotropic extensions of the existing isotropic solution to the modified field equations through the gravitational decoupling in $f(\mathbb{R…

gr-qc202424 cited

Study of Anisotropic Compact Stars in Gravity

M. Sharif, T. Naseer

This paper aims to examine the composition of various spherically symmetric star models which are coupled with anisotropic configuration in

gr-qc202422 cited

Anisotropic Durgapal-Fuloria Neutron Stars in Gravity

Tayyab Naseer, M. Sharif, Sana Manzoor +1

The main purpose of this paper is to obtain physically stable stellar models coupled with anisotropic matter distribution in the context of theory.…

gr-qc202445 cited

Study of Decoupled Anisotropic Solutions in Theory

Tayyab Naseer, M. Sharif

In this paper, we consider isotropic solution and extend it to two different exact well-behaved spherical anisotropic solutions through minimal geometric deformation method in $f(R…