Abstract We consider spherical exact models for compact stars with anisotropic pressures and a conformal symmetry. The conformal symmetry condition generates an integral relationship between the gravitational potentials. We solve this condition to find a new anisotropic solution to the Einstein field equations. We demonstrate that the exact solution produces a relativistic model of a compact star. The model generates stellar radii and masses consistent with PSR J1614-2230, Vela X1, PSR J1903+327 and Cen X-3. A detailed physical examination shows that the model is regular, well behaved and stable. The mass–radius limit and the surface red shift are consistent with observational constraints
We find a new family of exact solutions to the Einstein system of equations with an anisotropic flui...
We present model for anisotropic compact star under the general theory of relativity of Einstein. In...
In the present article, we have presented completely new exact, finite and regular class I solutions...
We generate a new generalized regular charged anisotropic exact model that admits conformal symmetry...
We study exact models for anisotropic gravitating stars with conformal symmetry. The gravitational p...
In this article we obtain a new anisotropic solution for Einstein’s field equations of embedding cla...
The main focus of this paper is to explore the possibility of providing a new family of exact soluti...
In this present work, we have obtained a singularity-free spherically symmetric stellar model with a...
International audienceIn this paper, we develop a new class of models for a compact star with anisot...
In the present article, we have constructed static anisotropic compact star models of Einstein field...
Abstract This work presents an algorithm for modeling a static spherically symmetric compact object ...
Abstract In present article a new model of compact star is obtained in the framework of general rela...
Abstract We investigate the effect of electric charge in anisotropic compact stars with conformal sy...
A physically realistic stellar model with a simple expression for the energy density and conformally...
Doctor of Philosophy in Applied Mathematics, University of KwaZulu-Natal, Westville, 2018.In this th...
We find a new family of exact solutions to the Einstein system of equations with an anisotropic flui...
We present model for anisotropic compact star under the general theory of relativity of Einstein. In...
In the present article, we have presented completely new exact, finite and regular class I solutions...
We generate a new generalized regular charged anisotropic exact model that admits conformal symmetry...
We study exact models for anisotropic gravitating stars with conformal symmetry. The gravitational p...
In this article we obtain a new anisotropic solution for Einstein’s field equations of embedding cla...
The main focus of this paper is to explore the possibility of providing a new family of exact soluti...
In this present work, we have obtained a singularity-free spherically symmetric stellar model with a...
International audienceIn this paper, we develop a new class of models for a compact star with anisot...
In the present article, we have constructed static anisotropic compact star models of Einstein field...
Abstract This work presents an algorithm for modeling a static spherically symmetric compact object ...
Abstract In present article a new model of compact star is obtained in the framework of general rela...
Abstract We investigate the effect of electric charge in anisotropic compact stars with conformal sy...
A physically realistic stellar model with a simple expression for the energy density and conformally...
Doctor of Philosophy in Applied Mathematics, University of KwaZulu-Natal, Westville, 2018.In this th...
We find a new family of exact solutions to the Einstein system of equations with an anisotropic flui...
We present model for anisotropic compact star under the general theory of relativity of Einstein. In...
In the present article, we have presented completely new exact, finite and regular class I solutions...