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CFT and black hole entropy in induced gravity

Valeri Frolov et al JHEP03(2003)038   doi: 10.1088/1126-6708/2003/03/038  Help

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Valeri Frolov1, Dmitri Fursaev2 and Andrei Zelnikov1,3
1 Theoretical Physics Institute, Department of Physics, University of Alberta, Edmonton, Canada, T6G 2J1
2 Bogoliubov Laboratory of Theoretical Physics, Joint Institute for Nuclear Research, 141980 Dubna, Moscow Region, Russia
3 Lebedev Physics Institute, Leninski pr. 53, Moscow 119 991, Russia
E-mail: fursaev@thsun1.jinr.ru

Abstract. We present a derivation of the entropy of black holes in induced gravity models based on conformal properties of induced gravity constituents near the horizon. The four-dimensional (4D) theory is first reduced to a tower of two-dimensional (2D) gravities such that each 2D theory is induced by fields with certain momentum p along the horizon. We demonstrate that in the vicinity of the horizon constituents of the 2D induced gravities are described by conformal field theories (CFT) with specific central charges depending on spin and non-minimal couplings and with specific correlation lengths depending on the masses of fields and on the momentum p. This enables one to use CFT methods to count partial entropies s(p) in each 2D sector. The sum of partial entropies correctly reproduces the Bekenstein-Hawking entropy of the 4D induced gravity theory. Our results indicate that earlier attempts of the derivation of the entropy of black holes based on a near-horizon CFT may have a microscopic realization.

Key words: Conformal Field Models in String Theory; Black Holes; Models of Quantum Gravity

E-print number: hep-th/0302207
Cited: by
Refers: to

Received 27 February 2003, accepted for publication 21 March 2003
Published 24 March 2003

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