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Absorption/Scattering of Massless Dirac Wave from Black Hole Spacetimes with Cosmic String

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【作者】 廖浩陈菊华廖平王永久

【Author】 LIAO Hao;CHEN Ju-Hua;LIAO Ping;WANG Yong-Jiu;College of Physics and Information Science, Hunan Normal University;

【机构】 College of Physics and Information Science Hunan Normal University

【摘要】 In this paper we investigate the scattering of massless Dirac wave from several different black hole spacetimes(i.e. the Schwarzschild black hole, the RN extremal black hole, the Schwarzschild de Sitter black hole, and the extremal Schwarzschild de Sitter black hole) which are influenced by the cosmic string, respectively. All these cases show us that the total absorption cross sections oscillate around the geometric-optical limit and decrease with linear mass density μof the cosmic string. All of the total scattering cross sections exhibit that the main scattering angle becomes narrower for the high partial frequency wave. Due to the influence of cosmic string, the glory peak becomes wider for larger values of linear mass density μ of the cosmic string.

【Abstract】 In this paper we investigate the scattering of massless Dirac wave from several different black hole spacetimes(i.e. the Schwarzschild black hole, the RN extremal black hole, the Schwarzschild de Sitter black hole, and the extremal Schwarzschild de Sitter black hole) which are influenced by the cosmic string, respectively. All these cases show us that the total absorption cross sections oscillate around the geometric-optical limit and decrease with linear mass density μof the cosmic string. All of the total scattering cross sections exhibit that the main scattering angle becomes narrower for the high partial frequency wave. Due to the influence of cosmic string, the glory peak becomes wider for larger values of linear mass density μ of the cosmic string.

【基金】 Supported by the National Natural Science Foundation of China under Grant No.10873004;the State Key Development Program for Basic Research Program of China under Grant No.2010CB832803
  • 【文献出处】 Communications in Theoretical Physics ,理论物理通讯(英文版) , 编辑部邮箱 ,2014年08期
  • 【分类号】P145.8
  • 【下载频次】23
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