Investigation of Unruh temperature of Black holes by using of EGUP formalism
arXiv:2009.03627 · doi:10.1209/0295-5075/130/40001
Abstract
In this paper, we have used the extended generalized uncertainty principle to investigate the Unruh temperature and thermodynamic properties of a black hole. We started with a brief perusal of the Heisenberg uncertainty principle and continue with some physical and mathematical discussion for obtaining the generalized and the extended generalized uncertainty principle. Then, we obtained the Unruh temperature, mass-temperature, specific heat, and entropy functions of a black hole. We enriched the paper with graphical analysis as well as their comparisons.
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Cited by in corpus (14)
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- Effect of the modified Heisenberg algebra on the Black hole thermodynamics
- EUP-corrected thermodynamics of BTZ black hole
- Effect of Snyder-de Sitter model on the Black hole thermodynamics in the context of rainbow gravity
- Quantum corrections to the quasinormal modes of the Schwarzschild black hole
- Quantum corrections to the thermodynamics of rotating charged BTZ black hole in gravity's rainbow
- New higher-order generalized uncertainty principle: Applications
- Tsallis uncertainty
- Extended Uncertainty Principle: A Deeper Insight into the Hubble Tension?
- Hawking temperature of black holes using the EUP and EGUP formalisms based on the Einstein-Bohr's photon box
- The spin-one DKP Equation with a nonminimal vector interaction in the presence of minimal uncertainty in momentum
- -deformed power spectrum and modified Unruh temperature
- Thermodynamic modifications to Bardeen black holes surrounded by quintessence based on the new higher order GUP