The Bekenstein-Hawking Corpuscular Cascading from the Back-Reacted Black Hole

Loading...
Thumbnail Image

Date

Journal Title

Journal ISSN

Volume Title

Publisher

Hindawi Ltd

Access Rights

info:eu-repo/semantics/openAccess

Abstract

Exciting peculiarities of Planck-scale physics have immediate effects on the Bekenstein-Hawking radiation emitted from black holes (BHs). In this paper, using the tunneling formalism, we determine the Bekenstein-Hawking temperature for the vector particles from a back-reacted black hole (BBH) constructed from a conformal scalar field surrounded by a BTZ (Banados-Teitelboim-Zanelli) BH. Then, under the effect of the generalized uncertainty principle, we extend our calculations for scalar particles to understand the effects of quantum gravity. Then, we calculate an evaporation time for the BBH, the total number of Bekenstein-Hawking particles, and the quantum corrections of the number. We observe that remnants of the BH evaporation occur and that they affect the Bekenstein-Hawking temperature of the BBH as well as the total number of Bekenstein-Hawking particles.

Description

Keywords

Massive Vector Particles, Radiation, Thermodynamics, Temperature, Kerr, Spectrum, Entropy, Space

Journal or Series

Advances in High Energy Physics

WoS Q Value

Scopus Q Value

Volume

2017

Issue

Citation

Endorsement

Review

Supplemented By

Referenced By