Black hole thermodynamics in the presence of a maximal length and minimum measurable in momentum

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Hauptverfasser: Hamil, Bilel, Lütfüoğlu, Bekir Can
Format: Preprint
Veröffentlicht: 2021
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author Hamil, Bilel
Lütfüoğlu, Bekir Can
author_facet Hamil, Bilel
Lütfüoğlu, Bekir Can
contents In this work, incorporating the effect of the minimum measurable in momentum and maximal length, we studied thermodynamics property of Schwarzschild black hole and the Unruh effect. {\color{red} According to this scenario, we see that the black hole temperature cannot be smaller than a certain minimum value of $ T_{\min} $. Moreover, we find that black hole mass cannot be larger than a maximum mass value of $M_{\max }$. Considering these findings first we compute the corrected Hawking temperature versus the mass and examine its characteristic behavior. Then, we derive the black hole's entropy and heat capacity. We find that the black hole is stable when $\frac{M_{\max }}{\sqrt{3}}<M<M_{\max }$. Finally, we examined the modified Unruh effect. We find that the modified Unruh temperature explicitly depends on $α$.
format Preprint
id arxiv_https___arxiv_org_abs_2104_08672
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Black hole thermodynamics in the presence of a maximal length and minimum measurable in momentum
Hamil, Bilel
Lütfüoğlu, Bekir Can
General Relativity and Quantum Cosmology
High Energy Physics - Theory
In this work, incorporating the effect of the minimum measurable in momentum and maximal length, we studied thermodynamics property of Schwarzschild black hole and the Unruh effect. {\color{red} According to this scenario, we see that the black hole temperature cannot be smaller than a certain minimum value of $ T_{\min} $. Moreover, we find that black hole mass cannot be larger than a maximum mass value of $M_{\max }$. Considering these findings first we compute the corrected Hawking temperature versus the mass and examine its characteristic behavior. Then, we derive the black hole's entropy and heat capacity. We find that the black hole is stable when $\frac{M_{\max }}{\sqrt{3}}<M<M_{\max }$. Finally, we examined the modified Unruh effect. We find that the modified Unruh temperature explicitly depends on $α$.
title Black hole thermodynamics in the presence of a maximal length and minimum measurable in momentum
topic General Relativity and Quantum Cosmology
High Energy Physics - Theory
url https://arxiv.org/abs/2104.08672