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Charged Fermions Tunneling from a Rotating Charged Black Hole in 5-Dimensional Gauged Supergravity

Charged Fermions Tunneling from a Rotating Charged Black Hole in 5-Dimensional Gauged Supergravity
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摘要 Recent research shows that Hawking radiation from black hole horizon can be treated as a quantum tunneling process, and fermions tunneling method can successfully recover Hawking temperature. In this tunneling framework, choosing a set of appropriate matrices γ^μ is an important technique for fermions tunneling method. In this paper, motivated by Kerner and Man's fermions tunneling method of 4 dimension black holes, we further improve the analysis to investigate Hawking tunneling radiation from a rotating charged black hole in 5-dimensional gauged supergravity by constructing a set of appropriate matrices γ^μ for general covariant Dirac equation. Finally, the expected Hawking temperature of the black hole is correctly recovered, which takes the same form as that obtained by other methods. This method is universal, and can also be directly extend to the other different-type 5-dimensional charged black holes.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2010年第11期849-853,共5页 理论物理通讯(英文版)
基金 Supported by the Natural Science Foundation of Liaoning Province of China under Grant No.2009A646
关键词 rotating charged black hole Dirac particles Hawking radiation Hawking temperature 带电黑洞 费米子 超引力 隧道 Hawking温度 旋转 霍金辐射 收费
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