In this paper, employing the path integral method in the framework of a canonical description of a Schwarzschild black hole, we obtain the corrected inverse temperature and entropy of the black hole. The corrections are those coming from the quantum effects as well as from the Generalized Uncertainty Principle effects. Furthermore, an equivalence between the polymer quantization and the Generalized Uncertainty Principle description is shown provided the parameters characterizing these two descriptions are proportional
This research explores a unified expression for the black hole thermodynamics in the presence of a s...
Abstract This research explores a unified expression for the black hole thermodynamics in the presen...
In this paper, we continue the analysis of the effective model of quantum Schwarzschild black holes...
AbstractIn this paper, employing the path integral method in the framework of a canonical descriptio...
In this paper, employing the path integral method in the framework of a canonical description of a S...
AbstractIn this paper, employing the path integral method in the framework of a canonical descriptio...
AbstractRecently, there has been much attention devoted to resolving the quantum corrections to the ...
In this paper, we calculate the modification to the thermodynamics of a Schwarzschild black hole in ...
We investigate the thermodynamics of Schwarzschild–Tangherlini black hole in the context of the gene...
Here we study the effects of the Generalized Uncertainty Principle in the tunneling formalism for Ha...
Here we study the effects of the Generalized Uncertainty Principle in the tunneling formalism for Ha...
AbstractIn a heuristic manner, we discuss the effect of the modified dispersion relation (MDR) on th...
We study the modification of thermodynamic properties of Schwarzschild and Reissner-Nordström black ...
In this paper, we have investigated the thermodynamics of Schwarzschild black holes using the symmet...
In this paper we study the thermodynamic properties of the Schwarzschild black hole using a new form...
This research explores a unified expression for the black hole thermodynamics in the presence of a s...
Abstract This research explores a unified expression for the black hole thermodynamics in the presen...
In this paper, we continue the analysis of the effective model of quantum Schwarzschild black holes...
AbstractIn this paper, employing the path integral method in the framework of a canonical descriptio...
In this paper, employing the path integral method in the framework of a canonical description of a S...
AbstractIn this paper, employing the path integral method in the framework of a canonical descriptio...
AbstractRecently, there has been much attention devoted to resolving the quantum corrections to the ...
In this paper, we calculate the modification to the thermodynamics of a Schwarzschild black hole in ...
We investigate the thermodynamics of Schwarzschild–Tangherlini black hole in the context of the gene...
Here we study the effects of the Generalized Uncertainty Principle in the tunneling formalism for Ha...
Here we study the effects of the Generalized Uncertainty Principle in the tunneling formalism for Ha...
AbstractIn a heuristic manner, we discuss the effect of the modified dispersion relation (MDR) on th...
We study the modification of thermodynamic properties of Schwarzschild and Reissner-Nordström black ...
In this paper, we have investigated the thermodynamics of Schwarzschild black holes using the symmet...
In this paper we study the thermodynamic properties of the Schwarzschild black hole using a new form...
This research explores a unified expression for the black hole thermodynamics in the presence of a s...
Abstract This research explores a unified expression for the black hole thermodynamics in the presen...
In this paper, we continue the analysis of the effective model of quantum Schwarzschild black holes...