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Hawking Radiation as Tunneling for Extremal and Rotating Black Holes

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arxiv hep-th/0503081 v2 pith:CCKNB7PT submitted 2005-03-09 hep-th

Hawking Radiation as Tunneling for Extremal and Rotating Black Holes

classification hep-th
keywords blackextremaltunnelinghawkingholemethodradiationrotating
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The issue concerning semi-classical methods recently developed in deriving the conditions for Hawking radiation as tunneling, is revisited and applied also to rotating black hole solutions as well as to the extremal cases. It is noticed how the tunneling method fixes the temperature of extremal black hole to be zero, unlike the Euclidean regularity method that allows an arbitrary compactification period. A comparison with other approaches is presented.

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  1. Quantum-Corrected Thermodynamics, Dirac Perturbations, Geodesic Structure, and Topological Phases of Black Holes with Non-Minimal Logarithmic Coupling

    gr-qc 2026-07 reject novelty 4.0

    For the ln(R)F² black hole, a single coupling B is claimed to shrink the shadow and ISCO, alter Dirac quasinormal ringing, suppress Hawking luminosity, and set the sign of an effective pressure on the topological defect line.