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Generalized uncertainty principle and Bekenstein-Hawking entropy in tunneling rate of Kerr black hole. (English) Zbl 1276.83019

Summary: We study the effects of the generalized uncertainty principle in the tunneling formalism for Hawking radiation to evaluate the quantum-corrected Hawking temperature and entropy for a Kerr black hole. By assumption of a spatially flat universe accompanied with expansion of metric, the modified area and entropy of Kerr black hole are calculated and we could obtain an expression for entropy of black hole that is changing with respect to time and Bekenstein-Hawking temperature.

MSC:

83C57 Black holes
80A10 Classical and relativistic thermodynamics
83C47 Methods of quantum field theory in general relativity and gravitational theory
Full Text: DOI

References:

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