Accurate correction of arbitrary spin fermions quantum tunneling from non-stationary Kerr-de Sitter black hole based on corrected Lorentz dispersion relation
High Energy Physics - Theory
2020-12-30 v1 General Relativity and Quantum Cosmology
Quantum Physics
Abstract
According to a corrected dispersion relation proposed in the study on string theory and quantum gravity theory, Rarita-Schwinger equation has been precisely modified, which results in a Rarita-Schwinger-Hamilton-Jacobi equation, and through which, the characteristics of arbitrary spin fermions quantum tunneling radiation from non-stationary Kerr-de Sitter black hole are researched. A series of accurately corrected physical quantities such as surface gravity, chemical potential, tunneling probability and Hawking temperature that describe the properties of the black hole are derived. This research has enriched the research methods and made precision of the research contents of black hole physics.
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Cite
@article{arxiv.2002.03368,
title = {Accurate correction of arbitrary spin fermions quantum tunneling from non-stationary Kerr-de Sitter black hole based on corrected Lorentz dispersion relation},
author = {Bei Sha and Zhi-E Liu and Yu-Zhen Liu and Xia Tan and Jie Zhang and Shu-Zheng Yang},
journal= {arXiv preprint arXiv:2002.03368},
year = {2020}
}
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8 pages