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Statistical Entropy of Schwarzschild Black Holes

The entropy of a seven dimensional Schwarzschild black hole of arbitrary large radius is obtained by a mapping onto a near extremal self-dual three-brane whose partition function can be evaluated. The three-brane arises from duality after submitting a neutral blackbrane, from which the Schwarzschild...

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Detalles Bibliográficos
Autores principales: Englert, F., Rabinovici, E.
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0370-2693(98)00293-7
http://cds.cern.ch/record/342382
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author Englert, F.
Rabinovici, E.
author_facet Englert, F.
Rabinovici, E.
author_sort Englert, F.
collection CERN
description The entropy of a seven dimensional Schwarzschild black hole of arbitrary large radius is obtained by a mapping onto a near extremal self-dual three-brane whose partition function can be evaluated. The three-brane arises from duality after submitting a neutral blackbrane, from which the Schwarzschild black hole can be obtained by compactification, to an infinite boost in non compact eleven dimensional space-time and then to a Kaluza-Klein compactification. This limit can be defined in precise terms and yields the Beckenstein-Hawking value up to a factor of order one which can be set to be exactly one with the extra assumption of keeping only transverse brane excitations. The method can be generalized to five and four dimensional black holes.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
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spelling cern-3423822023-03-14T17:14:09Zdoi:10.1016/S0370-2693(98)00293-7http://cds.cern.ch/record/342382engEnglert, F.Rabinovici, E.Statistical Entropy of Schwarzschild Black HolesParticle Physics - TheoryThe entropy of a seven dimensional Schwarzschild black hole of arbitrary large radius is obtained by a mapping onto a near extremal self-dual three-brane whose partition function can be evaluated. The three-brane arises from duality after submitting a neutral blackbrane, from which the Schwarzschild black hole can be obtained by compactification, to an infinite boost in non compact eleven dimensional space-time and then to a Kaluza-Klein compactification. This limit can be defined in precise terms and yields the Beckenstein-Hawking value up to a factor of order one which can be set to be exactly one with the extra assumption of keeping only transverse brane excitations. The method can be generalized to five and four dimensional black holes.The entropy of a seven dimensional Schwarzschild black hole of arbitrary large radius is obtained by a mapping onto a near extremal self-dual three-brane whose partition function can be evaluated. The three-brane arises from duality after submitting a neutral blackbrane, from which the Schwarzschild black hole can be obtained by compactification, to an infinite boost in non compact eleven dimensional space-time and then to a Kaluza-Klein compactification. This limit can be defined in precise terms and yields the Bekenstein-Hawking value up to a factor of order one which can be set to be exactly one with the extra assumption of keeping only transverse brane excitations. The method can be generalized to five and four dimensional black holes.hep-th/9801048ULB-TH-98-01RI-98-01CERN-TH-98-05CERN-TH-98-005LAL-RI-98-1ULB-TH-98-01oai:cds.cern.ch:3423821998-01-09
spellingShingle Particle Physics - Theory
Englert, F.
Rabinovici, E.
Statistical Entropy of Schwarzschild Black Holes
title Statistical Entropy of Schwarzschild Black Holes
title_full Statistical Entropy of Schwarzschild Black Holes
title_fullStr Statistical Entropy of Schwarzschild Black Holes
title_full_unstemmed Statistical Entropy of Schwarzschild Black Holes
title_short Statistical Entropy of Schwarzschild Black Holes
title_sort statistical entropy of schwarzschild black holes
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/S0370-2693(98)00293-7
http://cds.cern.ch/record/342382
work_keys_str_mv AT englertf statisticalentropyofschwarzschildblackholes
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