Logarithmic corrections to black hole and black ring entropy in tunneling approach
arXiv:0910.5540 · doi:10.1209/0295-5075/95/10008
Abstract
The tunneling approach beyond semiclassical approximation has been used to calculate the corrected Hawking temperature and entropy for various black holes and FRW universe model. We examine their derivations, and prove that the quantity in the corrected temperature is the explicit function of the only free parameter (which is an auxiliary parameter defined by ). Our analysis improves previous calculations, and indicates that the leading order logarithmic correction to entropy is a natural result of the corrected temperature and the first law of thermodynamics. Additionally, we apply the tunneling approach beyond semiclassical approximation to neutral black rings. Based on the analysis, we show that the entropy of neutral black rings also has a logarithmic leading order correction.
13 pages, rewritten
References in corpus (9)
- Fermion Tunneling Beyond Semiclassical Approximation
- Corrected entropy of BTZ black hole in tunneling approach
- Dirac particles' tunnelling from black rings
- Exact Differential and Corrected Area Law for Stationary Black Holes in Tunneling Method
- Tunnelling through black rings
- Corrected Entropy of Friedmann-Robertson-Walker Universe in Tunneling Method
- Quantum Tunneling, Blackbody Spectrum and Non-Logarithmic Entropy Correction for Lovelock Black Holes
- Phase-space and Black Hole Entropy of Higher Genus Horizons in Loop Quantum Gravity
- Hawking Radiation of Black Rings from Anomalies
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