In the present article, we discuss relativistic anisotropic solutions of Einstein field equations for the spherically symmetric line element under the class I condition. To do so we apply the embedding class one technique using Eisland condition. Within this approach, one arrives at a particular differential equation that links the two metric components $$e^{\nu }$$ and $$e^{\lambda }$$. In order to obtain the full space–time description inside the stellar configuration we ansatz the generalized form of metric component $$g_{rr}$$ corresponding to the Finch–Skea solution. Once the space–time geometry is specified we obtain the complete thermodynamic description i.e. the matter density $$\rho $$, the radial, and tangential pressures $$p_r$$ ...
In this article, we provide a new model of static charged anisotropic fluid sphere made of a charged...
We present a class of exact solutions of Einstein's gravitational-field equations describing spheric...
Abstract This work presents an algorithm for modeling a static spherically symmetric compact object ...
In this work, we present a new class of analytic and well-behaved solution to Einstein’s field equat...
In this article we obtain a new anisotropic solution for Einstein’s field equations of embedding cla...
We present a new class of relativistic anisotropic stellar models with spherically symmetric matter ...
In this article, we have presented a static anisotropic solution of stellar compact objects for self...
We present a class of exact solutions of Einstein's gravitational field equations describing spheric...
In the present article, we have constructed static anisotropic compact star models of Einstein field...
We study Einstein’s field equations to describe static spherically symmetric relativistic compact ob...
We present a class of exact solutions of the Einstein gravitational field equations describing spher...
The main focus of this paper is to explore the possibility of providing a new family of exact soluti...
This work is devoted to the study of relativistic anisotropic compact objects. To obtain this class ...
The static isotropic gravitational field equation, governing the geometry and dynamics of stellar st...
We present a class of exact solutions of Einstein's gravitational field equations describing spheric...
In this article, we provide a new model of static charged anisotropic fluid sphere made of a charged...
We present a class of exact solutions of Einstein's gravitational-field equations describing spheric...
Abstract This work presents an algorithm for modeling a static spherically symmetric compact object ...
In this work, we present a new class of analytic and well-behaved solution to Einstein’s field equat...
In this article we obtain a new anisotropic solution for Einstein’s field equations of embedding cla...
We present a new class of relativistic anisotropic stellar models with spherically symmetric matter ...
In this article, we have presented a static anisotropic solution of stellar compact objects for self...
We present a class of exact solutions of Einstein's gravitational field equations describing spheric...
In the present article, we have constructed static anisotropic compact star models of Einstein field...
We study Einstein’s field equations to describe static spherically symmetric relativistic compact ob...
We present a class of exact solutions of the Einstein gravitational field equations describing spher...
The main focus of this paper is to explore the possibility of providing a new family of exact soluti...
This work is devoted to the study of relativistic anisotropic compact objects. To obtain this class ...
The static isotropic gravitational field equation, governing the geometry and dynamics of stellar st...
We present a class of exact solutions of Einstein's gravitational field equations describing spheric...
In this article, we provide a new model of static charged anisotropic fluid sphere made of a charged...
We present a class of exact solutions of Einstein's gravitational-field equations describing spheric...
Abstract This work presents an algorithm for modeling a static spherically symmetric compact object ...