We use gravitational decoupling to establish a connection between the minimal geometric deformation approach and the standard method for obtaining anisotropic fluid solutions. Motivated by the relations that appear in the framework of minimal geometric deformation, we give an anisotropy factor that allows us to solve the quasi–Einstein equations associated to the decoupling sector. We illustrate this by building an anisotropic extension of the well known Tolman IV solution, providing in this way an exact and physically acceptable solution that represents the behavior of compact objects. We show that, in this way, it is not necessary to use the usual mimic constraint conditions. Our solution is free from physical and geometrical singularitie...
Abstract We study the minimal geometric deformation decoupling in $$2+1$$ 2+1 dimensional space–time...
Abstract We investigate how a spherically symmetric fluid modifies the Schwarzschild vacuum solution...
We present a new systematic approach to find the exact gravitationally decoupled anisotropic spheric...
In this work we investigate the extra packing of mass within the framework of gravitational decoupli...
We presented a non-singular solution of Einstein’s field equations using gravitational decoupling by...
We study the minimal geometric deformation decoupling in $$2+1$$ dimensional space–times and impleme...
We investigate the extension of isotropic interior solutions for static self-gravitating systems to ...
Abstract We investigate the extension of isotropic interior solutions for static self-gravitating sy...
Durgapal’s fifth isotropic solution describing spherically symmetric and static matter distribution ...
Abstract Durgapal’s fifth isotropic solution describing spherically symmetric and static matter dist...
We investigate the extension of isotropic inte- rior solutions for static self-gravitating systems t...
We investigate the extension of isotropic inte- rior solutions for static self-gravitating systems t...
In this paper we show that any static and spherically symmetric anisotropic solution of the Einstein...
Abstract In this paper we show that any static and spherically symmetric anisotropic solution of the...
open4siWe investigate the extension of isotropic inte- rior solutions for static self-gravitating sy...
Abstract We study the minimal geometric deformation decoupling in $$2+1$$ 2+1 dimensional space–time...
Abstract We investigate how a spherically symmetric fluid modifies the Schwarzschild vacuum solution...
We present a new systematic approach to find the exact gravitationally decoupled anisotropic spheric...
In this work we investigate the extra packing of mass within the framework of gravitational decoupli...
We presented a non-singular solution of Einstein’s field equations using gravitational decoupling by...
We study the minimal geometric deformation decoupling in $$2+1$$ dimensional space–times and impleme...
We investigate the extension of isotropic interior solutions for static self-gravitating systems to ...
Abstract We investigate the extension of isotropic interior solutions for static self-gravitating sy...
Durgapal’s fifth isotropic solution describing spherically symmetric and static matter distribution ...
Abstract Durgapal’s fifth isotropic solution describing spherically symmetric and static matter dist...
We investigate the extension of isotropic inte- rior solutions for static self-gravitating systems t...
We investigate the extension of isotropic inte- rior solutions for static self-gravitating systems t...
In this paper we show that any static and spherically symmetric anisotropic solution of the Einstein...
Abstract In this paper we show that any static and spherically symmetric anisotropic solution of the...
open4siWe investigate the extension of isotropic inte- rior solutions for static self-gravitating sy...
Abstract We study the minimal geometric deformation decoupling in $$2+1$$ 2+1 dimensional space–time...
Abstract We investigate how a spherically symmetric fluid modifies the Schwarzschild vacuum solution...
We present a new systematic approach to find the exact gravitationally decoupled anisotropic spheric...