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Quasinormal Spectrum and Quantization of the Kerr-Newman Black Hole

Quasinormal Spectrum and Quantization of the Kerr-Newman Black Hole
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摘要 The intermediate asymptotic quasinormal mode spectrum of the charged scalar and Dirac fields in the near extremal Kerr-Newman black hole is studied analytically, It is found that the quasinormal mode spectrum can be expressed in terms of the Hawking temperature Thb, the electric potential Ф+ and the horizon's angular velocity ΩH for the case of (eФ_ + mΩH) 〉 (1 - 4πThb)Re(ω) (where e is the charge and m is the azimuthal projection number), whereas it is only relevant to the charge and the mass parameter for another case. It is also shown that by using the Bohr's correspondence principle, the fundamental change in the black-hole surface area induced by the emission of a rotating charged quantum from the Kerr-Newman black hole is in accord with the Bekenstein-Mukhanov general prediction. The intermediate asymptotic quasinormal mode spectrum of the charged scalar and Dirac fields in the near extremal Kerr-Newman black hole is studied analytically, It is found that the quasinormal mode spectrum can be expressed in terms of the Hawking temperature Thb, the electric potential Ф+ and the horizon's angular velocity ΩH for the case of (eФ_ + mΩH) 〉 (1 - 4πThb)Re(ω) (where e is the charge and m is the azimuthal projection number), whereas it is only relevant to the charge and the mass parameter for another case. It is also shown that by using the Bohr's correspondence principle, the fundamental change in the black-hole surface area induced by the emission of a rotating charged quantum from the Kerr-Newman black hole is in accord with the Bekenstein-Mukhanov general prediction.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2008年第3期858-861,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 Foundation for the Author of National Excellent Doctoral Dissertation of China under Grant No 200317, the Hunan Provincial Natural Science Foundation of China under Grant No 07A0128, and the Construct Programme of the Key Discipline in Hunan Province.
关键词 NORMAL-MODES FIELD NORMAL-MODES FIELD
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