Evaluation of physical properties of Kiselev like AdS spacetime in the context of gravity under the impact of quantum gravity
arXiv:2502.17342 · doi:10.1016/j.dark.2025.101868
Abstract
The developments of the gravity theory, which is a logical expansion of general relativity according to Einstein, inspire us to examine this theory in greater detail and take up our study to obtain a modification of the Kiselev-like AdS black holes scenario. In this study, we employ the semi-classical Hamilton-Jacobi procedure to investigate the Hawking temperature for 4-dimensional Kiselev-like AdS BHs in the context of gravity. We derive the temperature using a standard formula for Kiselev-like AdS BHs in the context of gravity. The relativistic field equation in the context of the generalized uncertainty principle (GUP), the semi-classical Hamilton-Jacobi procedure, and the WKB strategy are used to tunnel boson particles into the horizon under the effect of quantum gravity as well as Hawking temperature and also use this temperature to compute entropy corrections. Further, we study the gravity (), quantum gravity (), and particle kinetic energy () effect on both temperature and entropy.
Comments: 20 Pages, 12 figures, 1 table, Published in Physics of the Dark Universe
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