We obtain well behaved interior solutions describing hydrostatic equilibrium of anisotropic relativistic stars in scale-dependent gravity, where Newton’s constant is allowed to vary with the radial coordinate throughout the star. Assuming (1) a linear equation-of-state in the MIT bag model for quark matter, and (2) a certain profile for the energy density, we integrate numerically the generalized structure equations, and we compute the basic properties of the strange quark stars, such as mass, radius and compactness. Finally, we demonstrate that stability criteria as well as the energy conditions are fulfilled. Our results show that a decreasing Newton’s constant throughout the objects leads to slightly more massive and more compact stars
International audienceWe study a specific model of anisotropic strange stars in the modified |$f\lef...
International audienceWe study a specific model of anisotropic strange stars in the modified |$f\lef...
We present an exact analytical solution of the gravitational field equations describing a static sph...
We study relativistic stars in the scale-dependent scenario, which is one of the approaches to quant...
Abstract The aim of this paper is to analyze the nature of anisotropic spherically symmetric relativ...
Within the framework of Einstein’s General Relativity we study strange quark stars assuming an inter...
Within the metric formalism of $f(R)$ theories of gravity, where $R$ is the Ricci scalar, we study t...
We study non-rotating and isotropic strange quark stars in Lorentz-violating theories of gravity, an...
We study non-rotating and isotropic strange quark stars in Lorentz-violating theories of gravity, an...
We study non-rotating and isotropic strange quark stars in Lorentz-violating theories of gravity, an...
We derive a new interior solution for stellar compact objects in $$f\mathcal {(R)}$$ gravity assumin...
By assuming a particular mass function we find new exact solutions to the Einstein field equations w...
The present paper provides a new exact and analytic solution of the Einstein–Maxwell field equations...
Abstract The present paper provides a new exact and analytic solution of the Einstein–Maxwell field ...
International audienceWe study a specific model of anisotropic strange stars in the modified |$f\lef...
International audienceWe study a specific model of anisotropic strange stars in the modified |$f\lef...
International audienceWe study a specific model of anisotropic strange stars in the modified |$f\lef...
We present an exact analytical solution of the gravitational field equations describing a static sph...
We study relativistic stars in the scale-dependent scenario, which is one of the approaches to quant...
Abstract The aim of this paper is to analyze the nature of anisotropic spherically symmetric relativ...
Within the framework of Einstein’s General Relativity we study strange quark stars assuming an inter...
Within the metric formalism of $f(R)$ theories of gravity, where $R$ is the Ricci scalar, we study t...
We study non-rotating and isotropic strange quark stars in Lorentz-violating theories of gravity, an...
We study non-rotating and isotropic strange quark stars in Lorentz-violating theories of gravity, an...
We study non-rotating and isotropic strange quark stars in Lorentz-violating theories of gravity, an...
We derive a new interior solution for stellar compact objects in $$f\mathcal {(R)}$$ gravity assumin...
By assuming a particular mass function we find new exact solutions to the Einstein field equations w...
The present paper provides a new exact and analytic solution of the Einstein–Maxwell field equations...
Abstract The present paper provides a new exact and analytic solution of the Einstein–Maxwell field ...
International audienceWe study a specific model of anisotropic strange stars in the modified |$f\lef...
International audienceWe study a specific model of anisotropic strange stars in the modified |$f\lef...
International audienceWe study a specific model of anisotropic strange stars in the modified |$f\lef...
We present an exact analytical solution of the gravitational field equations describing a static sph...