Statistical-Mechanical Entropies of Schwarzschild Black Hole due to Arbitrary Spin Fields in Different Coordinates  

Statistical-Mechanical Entropies of Schwarzschild Black Hole due to Arbitrary Spin Fields in Different Coordinates

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作  者:丁持坤 荆继良 

机构地区:[1]Institute of Physics and Department of Physics, Hunan Normal University, Changsha 410081

出  处:《Chinese Physics Letters》2007年第8期2189-2192,共4页中国物理快报(英文版)

基  金:Supported by the National Natural Science Foundation of China under Grant No 10675045; the FANEDD under Grant No 200317; and the SRFDP under Grant No 20040542003.

摘  要:The statistical-mechanical entropies of the Schwarzschild black hole arising from the scalar, Weyl neutrino, electromagnetic, Rarita-Schwinger and gravitational fields are investigated in the Painlevg and Lemaitre coordinates. Although the metrics in the Painlevg and the Lemaitre coordinates do not obviously possess the singularity as that in the Schwarzschild coordinate, we find that the entropies of the arbitrary spin fields in both the Painlevd and Lemaitre coordinates are exactly equivalent to that in the Schwarzschild coordinate.The statistical-mechanical entropies of the Schwarzschild black hole arising from the scalar, Weyl neutrino, electromagnetic, Rarita-Schwinger and gravitational fields are investigated in the Painlevg and Lemaitre coordinates. Although the metrics in the Painlevg and the Lemaitre coordinates do not obviously possess the singularity as that in the Schwarzschild coordinate, we find that the entropies of the arbitrary spin fields in both the Painlevd and Lemaitre coordinates are exactly equivalent to that in the Schwarzschild coordinate.

关 键 词:coated conductor buffer layer self-epitaxy CEO2 

分 类 号:O3[理学—力学]

 

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