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The information entropy of a static dilaton black hole 被引量:1

The information entropy of a static dilaton black hole
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摘要 In accordance with holographic principle, by calculating the statistical entropy of the quantum field just at the event horizon of the Garfinkle-Horowitz-Strominger dilaton black hole, the information entropy of the black hole was investigated and the Bekenstein-Hawking formula was obtained. The results show that black hole entropy is identical with the statistical entropy of the quantum field at the horizon. Using the generalized uncertainty relation, the divergence of the state density near the event horizon in usual quantum field theory was removed, and the cutoffs and the little mass approximation in the heat gas method of black hole entropy were avoided. Thus, the microstates of the massive scalar field just at the event horizon of the static dilaton black hole were studied directly and a description on holograph principle was presented. By using residue theorem, the integral difficulty in the calculation was overcome, and the information entropy and the Bekenstein-Hawking formula were obtained quantitatively. Compared with the black hole entropy from the loop quantum gravity, the consistency of methods and results of calculating black hole entropy in non-commutative quantum field theory and loop quantum gravity was investigated. By this, the gravity correction constant in the generalized uncertainty relation was suggested and the sense of holographic principle was discussed. In accordance with holographic principle, by calculating the statistical entropy of the quantum field just at the event horizon of the Garfinkle-Horowitz-Strominger dilaton black hole, the information entropy of the black hole was investigated and the Bekenstein-Hawking formula was obtained. The results show that black hole entropy is identical with the statistical entropy of the quantum field at the horizon. Using the generalized uncertainty relation, the divergence of the state density near the event horizon in usual quantum field theory was removed, and the cutoffs and the little mass approximation in the heat gas method of black hole entropy were avoided. Thus, the microstates of the massive scalar field just at the event horizon of the static dilaton black hole were studied directly and a description on holograph principle was presented. By using residue theorem, the integral difficulty in the calculation was overcome, and the information entropy and the Bekenstein-Hawking formula were obtained quantitatively. Compared with the black hole entropy from the loop quantum gravity, the consistency of methods and results of calculating black hole entropy in non-commutative quantum field theory and loop quantum gravity was investigated. By this, the gravity correction constant in the generalized uncertainty relation was suggested and the sense of holographic principle was discussed.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2008年第2期113-125,共13页 中国科学:物理学、力学、天文学(英文版)
基金 the National Natural Science Foundation of China (Grant No. 10375008) the National Basic Research Program of China (Grant No. 2003CB716300)
关键词 black hole entropy HOLOGRAPHIC principle NON-COMMUTATIVE QUANTUM field theory event HORIZON loop QUANTUM gravity black hole entropy holographic principle non-commutative quantum field theory event horizon loop quantum gravity
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  • 1GAO Changjun1,2 & SHEN Yougen1,2,3,4 1.Shanghai Astronomical Observatory,Chinese Academy of Sciences,Shanghai 200030,China(mailing address),2.National Astronomical Observatories,Chinese Academy of Sciences,Beijing 100012,China,3.Institute of Theoretical Physics,Chinese academy of Sciences,Beijing 100080,China,4.Shanghai United Center for Astrophysics,Shanghai 200234,China.Entropy of three-dimensional BTZ black holes[J].Science China(Physics,Mechanics & Astronomy),2004,47(3):277-283. 被引量:3

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