Effect of the modified Heisenberg algebra on the Black hole thermodynamics
arXiv:2011.01982 · doi:10.1209/0295-5075/133/30003
Abstract
In this letter, we introduce two new forms of uncertainty relations by extending the usual Heisenberg algebra with higher terms. Within these scenarios, at first, we study on the Unruh temperature. We find that the Unruh temperature increases in one of the new forms while it decreases in the other form. Next, we explore the thermodynamic properties of a Schwarzschild black hole by relying on these two new forms of the Heisenberg uncertainty relation. We present the modifications in the mass-temperature, specific heat, and entropy functions of the black hole according to the extension parameters.
11 pages, 7 figures
References in corpus (6)
- Discreteness of Space from the Generalized Uncertainty Principle
- Quantum-corrected black hole thermodynamics to all orders in the Planck length
- GUP parameter from quantum corrections to the Newtonian potential
- A Higher Order GUP with Minimal Length Uncertainty and Maximal Momentum II: Applications
- Investigation of Unruh temperature of Black holes by using of EGUP formalism
- Deformed spaces and loop cosmology