Anomaly analysis of Hawking radiation from 2+1 dimensional spinning black hole
Shao-Wen Wei, Ran Li, Yu-Xiao Liu, Ji-Rong Ren
Abstract
Open-access reader
Shao-Wen Wei, Ran Li, Yu-Xiao Liu, Ji-Rong Ren
Abstract
Open-access reader
Considering gravitational and gauge anomalies at the horizon, a new successful method that to derive Hawking radiations from black holes has been developed recently by Wilczek et al.. By using the dimensional reduction technique, we apply this method to a non-vacuum solution, the 2+1 dimensional spinning black hole. The Hawking temperature and angular velocity on the horizon are obtained. The results may partially imply that this method is independent of the gravity theory, the dimension of spacetime and the topological structure of the event horizon.
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Considering gravitational and gauge anomalies at the horizon, a new successful method that to derive Hawking radiations from black holes has been developed recently by Wilczek et al.. By using the dimensional reduction technique, we apply this method to a non-vacuum solution, the 2+1 dimensional spinning black hole. The Hawking temperature and angular velocity on the horizon are obtained. The results may partially imply that this method is independent of the gravity theory, the dimension of spacetime and the topological structure of the event horizon.
Key concepts: Hawking radiation, Event horizon, Physics, Black hole (networking), Micro black hole, Horizon, Black hole thermodynamics, Hawking