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Fermion’s Tunneling from a Kehagias-Sfetsos Spacetime Based on Generalized Uncertainty Principle

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In this paper, taking into account the effects of quantum-gravity, applying the modified Dirac equation in curved spacetime based on generalized uncertainty principle (GUP) close to Planck scale, we successfully… Click to show full abstract

In this paper, taking into account the effects of quantum-gravity, applying the modified Dirac equation in curved spacetime based on generalized uncertainty principle (GUP) close to Planck scale, we successfully investigate the quantum tunneling behavior and remnant from a Kehagias-Sfetsos spacetime and eventually obtain corrected tunneling rate and Hawking temperature. The result shows that the corrected Hawking tunneling temperature is related not only to the background of the Kehagias-Sfetsos spacetime and the energy of emitted particle, but also to the GUP parameter. We also discuss minimum radius and minimum non-zero mass by using the numerical method.

Keywords: spacetime based; generalized uncertainty; based generalized; uncertainty principle; sfetsos spacetime; kehagias sfetsos

Journal Title: International Journal of Theoretical Physics
Year Published: 2019

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