Abstract A new solution satisfying the Karmarkar condition is presented here. We were first to have discovered a hypergeometric function metric potential representing embedding class I spacetime. This new solution yields finite values of metric potentials, density, pressure, redshift, etc. and hence a non-singular solution. The solution is well behaved with respect to the parameter $$n=12$$ n = 12 to $$n=24$$ n = 24 corresponding to a stable configuration of mass $$2.01M_\odot $$ 2.01 M ⊙ and radius 9.1 km. The internal properties of the solution are very different for $$n=12$$ n = 12 to $$n=24$$ n = 24 ; however, the total mass and radius is independent of the parameter n. The energy conditions are also holds good by the solution which thu...
We studied a new class of interior solutions that are singular-free and useful for describing anisot...
We obtain a new anisotropic solution for spherically symmetric spacetimes by analyzing the Karmarkar...
In this article we obtain a new anisotropic solution for Einstein’s field equations of embedding cla...
In the present article a new generalised solution is obtained for anisotropic matter configuration u...
© World Scientific Publishing CompanyThis paper investigates the new interior solution of stellar co...
In the present article, we have presented completely new exact, finite and regular class I solutions...
In this study, we discuss the anisotropic matter distribution of compact stars in the context of Ras...
The main focus of this paper is to explore the possibility of providing a new family of exact soluti...
The present study explores the $$f(\mathcal {R},\mathcal {T})$$ modified gravity on the basis of obs...
We present model for anisotropic compact star under the general theory of relativity of Einstein. In...
The main aim of this work is devoted to studying the existence of compact spherical systems represen...
Abstract In present article a new model of compact star is obtained in the framework of general rela...
International audienceIn this study, we present a generalized spherically symmetric, anisotropic and...
In this research article, we have presented the modelling of quintessence compact stars which satisf...
We derive a new interior solution for stellar compact objects in $$f\mathcal {(R)}$$ gravity assumin...
We studied a new class of interior solutions that are singular-free and useful for describing anisot...
We obtain a new anisotropic solution for spherically symmetric spacetimes by analyzing the Karmarkar...
In this article we obtain a new anisotropic solution for Einstein’s field equations of embedding cla...
In the present article a new generalised solution is obtained for anisotropic matter configuration u...
© World Scientific Publishing CompanyThis paper investigates the new interior solution of stellar co...
In the present article, we have presented completely new exact, finite and regular class I solutions...
In this study, we discuss the anisotropic matter distribution of compact stars in the context of Ras...
The main focus of this paper is to explore the possibility of providing a new family of exact soluti...
The present study explores the $$f(\mathcal {R},\mathcal {T})$$ modified gravity on the basis of obs...
We present model for anisotropic compact star under the general theory of relativity of Einstein. In...
The main aim of this work is devoted to studying the existence of compact spherical systems represen...
Abstract In present article a new model of compact star is obtained in the framework of general rela...
International audienceIn this study, we present a generalized spherically symmetric, anisotropic and...
In this research article, we have presented the modelling of quintessence compact stars which satisf...
We derive a new interior solution for stellar compact objects in $$f\mathcal {(R)}$$ gravity assumin...
We studied a new class of interior solutions that are singular-free and useful for describing anisot...
We obtain a new anisotropic solution for spherically symmetric spacetimes by analyzing the Karmarkar...
In this article we obtain a new anisotropic solution for Einstein’s field equations of embedding cla...