Evaporation of Black Hole Under the Effect of Quantum Gravity
Abstract
This paper provides an extension for Hawking temperature of Reissner-Nordstrm-de Sitter (RN-DS) black hole (BH) with global monopole as well as D charged black hole. We consider the black holes metric and investigate the effects of quantum gravity () on Hawking radiation. We investigate the charged boson particles tunneling through the horizon of black holes by using the Hamilton-Jacobi ansatz phenomenon. In our investigation, we study the quantum radiation to analyze the Lagrangian wave equation with generalized uncertainty principle and calculate the modified Hawking temperatures for black holes. Furthermore, we analyze the charge and correction parameter effects on the modified Hawking temperature and examine the stable and unstable condition of RN-DS BH with global monopole as well as D charged black hole.
Keywords
Cite
@article{arxiv.2110.10579,
title = {Evaporation of Black Hole Under the Effect of Quantum Gravity},
author = {Riasat Ali and Rimsha Babar and Muhammad Asgher and Syed Asif Ali Shah},
journal= {arXiv preprint arXiv:2110.10579},
year = {2022}
}
Comments
14 pages, 5 figures, version accepted for publication in Int. J. of Geometric Methods in Modern Physics