In the present article a new generalised solution is obtained for anisotropic matter configuration using Karmarkar’s condition. The solution is used to model the interior structure of anisotropic relativistic objects as it satisfies all necessary physical conditions. The pressure, density and metric potentials are free from any singularities and exhibit well behaved nature inside the anisotropic fluid sphere. The TOV equation is well maintained within the stellar configuration and all energy conditions hold good. The causality condition is well satisfied for our stellar models and stability of compact star models is further verified via Herrera’s cracking method. Harrison-Zeldovich-Novikov criterion for stability is also satisfied by our mo...
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...
The present study explores the $$f(\mathcal {R},\mathcal {T})$$ modified gravity on the basis of obs...
Abstract A new solution satisfying the Karmarkar condition is presented here. We were first to have ...
In the present article, we have presented completely new exact, finite and regular class I solutions...
© World Scientific Publishing CompanyThis paper investigates the new interior solution of stellar co...
We studied a new class of interior solutions that are singular-free and useful for describing anisot...
In present article a new model of compact star is obtained in the framework of general relativity wh...
The main focus of this paper is to explore the possibility of providing a new family of exact soluti...
We present a family of new exact solutions for relativistic anisotropic stellar objects by consideri...
In this article we obtain a new anisotropic solution for Einstein’s field equations of embedding cla...
We present model for anisotropic compact star under the general theory of relativity of Einstein. In...
In the present article, we have obtained a new well behaved solution to Einstein’s field equations i...
We derive a new interior solution for stellar compact objects in $$f\mathcal {(R)}$$ gravity assumin...
In this study, we discuss the anisotropic matter distribution of compact stars in the context of Ras...
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...
The present study explores the $$f(\mathcal {R},\mathcal {T})$$ modified gravity on the basis of obs...
Abstract A new solution satisfying the Karmarkar condition is presented here. We were first to have ...
In the present article, we have presented completely new exact, finite and regular class I solutions...
© World Scientific Publishing CompanyThis paper investigates the new interior solution of stellar co...
We studied a new class of interior solutions that are singular-free and useful for describing anisot...
In present article a new model of compact star is obtained in the framework of general relativity wh...
The main focus of this paper is to explore the possibility of providing a new family of exact soluti...
We present a family of new exact solutions for relativistic anisotropic stellar objects by consideri...
In this article we obtain a new anisotropic solution for Einstein’s field equations of embedding cla...
We present model for anisotropic compact star under the general theory of relativity of Einstein. In...
In the present article, we have obtained a new well behaved solution to Einstein’s field equations i...
We derive a new interior solution for stellar compact objects in $$f\mathcal {(R)}$$ gravity assumin...
In this study, we discuss the anisotropic matter distribution of compact stars in the context of Ras...
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...
The present study explores the $$f(\mathcal {R},\mathcal {T})$$ modified gravity on the basis of obs...