Mechanism of the generation of black hole entropy in Sakharov's induced gravity

被引:95
作者
Frolov, VP
Fursaev, DV
机构
[1] UNIV ALBERTA,CIAR,COSMOL & GRAV PROGRAM,EDMONTON,AB T6G 2J1,CANADA
[2] PN LEBEDEV PHYS INST,MOSCOW 117924,RUSSIA
[3] JOINT INST NUCL RES,THEORET PHYS LAB,DUBNA 141980,RUSSIA
来源
PHYSICAL REVIEW D | 1997年 / 56卷 / 04期
关键词
D O I
10.1103/PhysRevD.56.2212
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The mechanism of the generation of Bekenstein-Hawking entropy S-BH of a black hole in the Sakharov's induced gravity is proposed. It is suggested that the ''physical'' degrees of freedom, uihich explain the entropy S-BH, form only a finite subset of the standard Rindler-like modes defined outside the black hole horizon. The entropy S-R of the Rindler modes, or entanglement entropy, is always ultraviolet divergent, while the entropy of the ''physical'' modes is finite and coincides in the induced gravity with S-BH. The two entropies S-BH and S-R differ by a surface integral Q interpreted as a Noether charge of nonminimally coupled scalar constituents of the model. We demonstrate that energy E and Hamiltonian H of the fields localized in a part of space-time, restricted by the Killing horizon Sigma, differ by the quantity T(H)Q, where T-H is the temperature of a black hole. The first law of black hole thermodynamics enables one to relate the probability distribution of fluctuations of the black hole mass, caused by the quantum fluctuations of the fields, to the probability distribution of ''physical'' modes over energy E. The latter turns out to be different from the distribution of the Rindler modes, We show that the probability distribution of the ''physical'' degrees of freedom has a sharp peak at E=0 with the width proportional to the Planck mass. The logarithm of number of ''physical'' states at the peak coincides exactly with the black hole entropy S-BH, This enables us to argue that the energy distribution of the ''physical'' modes and distribution of the black hole mass are equivalent in induced gravity. Finally it is shown that the Noether charge Q is related to the entropy of the low-frequency modes propagating in the vicinity of the bifurcation surface Sigma of the horizon. We find in particular an explicit representation of Q in terms of an effective action of some two-dimensional quantum fields ''living'' on Sigma.
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收藏
页码:2212 / 2225
页数:14
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