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Hawking radiation from the with a global monopole via Schwarzschild black hole gravitational anomaly
引用本文:彭俊金,吴双清. Hawking radiation from the with a global monopole via Schwarzschild black hole gravitational anomaly[J]. 中国物理 B, 2008, 17(3): 825-828
作者姓名:彭俊金  吴双清
作者单位:College of Physical Science and Technology, Central ChinaNormal University, Wuhan 430079, China;College of Physical Science and Technology, Central ChinaNormal University, Wuhan 430079, China
基金项目:Project supported by the NationalNatural Science Foundation of China (Grant No 10675051).
摘    要:This paper derives the Hawking flux from the Schwarzschild black hole with a global monopole by using Robinson and Wilczek's method. Adopting a dimensional reduction technique, it can describe the effective quantum field in the (3 + 1)-dimensional global monopole background by an infinite collection of the (1 + 1)-dimensional massless fields if neglecting the ingoing modes near the horizon, where the gravitational anomaly can be cancelled by the (1 + 1)- dimensional black body radiation at the Hawking temperature.

关 键 词:地球引力  霍金辐射  黑洞  地球单极子
收稿时间:2007-07-11
修稿时间:2007-08-02

Hawking radiation from the Schwarzschild black hole with a global monopole via gravitational anomaly
Peng Jun-Jin and Wu Shuang-Qing. Hawking radiation from the Schwarzschild black hole with a global monopole via gravitational anomaly[J]. Chinese Physics B, 2008, 17(3): 825-828
Authors:Peng Jun-Jin and Wu Shuang-Qing
Affiliation:College of Physical Science and Technology, Central ChinaNormal University, Wuhan 430079, China
Abstract:This paper derives the Hawking flux from the Schwarzschild blackhole with a global monopole by using Robinson and Wilczek's method.Adopting a dimensional reduction technique, it can describe theeffective quantum field in the (3+1)-dimensional global monopolebackground by an infinite collection of the (1+1)-dimensionalmassless fields if neglecting the ingoing modes near the horizon,where the gravitational anomaly can be cancelled by the(1+1)-dimensional black body radiation at the Hawking temperature.
Keywords:gravitational anomaly   Hawkingradiation   black hole   global monopole
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