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Classical and quantum N=2 supersymmetric black holes

We use heterotic/type-II prepotentials to study quantum/classical black holes with half the $N=2, D=4$ supersymmetries unbroken. We show that, in the case of heterotic string compactifications, the perturbatively corrected entropy formula is given by the tree-level entropy formula with the tree-leve...

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Autores principales: Behrndt, K, Lópes-Cardoso, G, de Wit, Bernard, Kallosh, Renata E, Lüst, Dieter, Mohaupt, T
Lenguaje:eng
Publicado: 1996
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0550-3213(97)00028-X
http://cds.cern.ch/record/312921
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author Behrndt, K
Lópes-Cardoso, G
de Wit, Bernard
Kallosh, Renata E
Lüst, Dieter
Mohaupt, T
author_facet Behrndt, K
Lópes-Cardoso, G
de Wit, Bernard
Kallosh, Renata E
Lüst, Dieter
Mohaupt, T
author_sort Behrndt, K
collection CERN
description We use heterotic/type-II prepotentials to study quantum/classical black holes with half the $N=2, D=4$ supersymmetries unbroken. We show that, in the case of heterotic string compactifications, the perturbatively corrected entropy formula is given by the tree-level entropy formula with the tree-level coupling constant replaced by the perturbative coupling constant. In the case of type-II compactifications, we display a new entropy/area formula associated with axion-free black-hole solutions, which depends on the electric and magnetic charges as well as on certain topological data of Calabi--Yau three-folds, namely the intersection numbers, the second Chern class and the Euler number of the three-fold. We show that, for both heterotic and type-II theories, there is the possibility to relax the usual requirement of the non-vanishing of some of the charges and still have a finite entropy.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1996
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spelling cern-3129212019-09-30T06:29:59Zdoi:10.1016/S0550-3213(97)00028-Xhttp://cds.cern.ch/record/312921engBehrndt, KLópes-Cardoso, Gde Wit, BernardKallosh, Renata ELüst, DieterMohaupt, TClassical and quantum N=2 supersymmetric black holesParticle Physics - TheoryWe use heterotic/type-II prepotentials to study quantum/classical black holes with half the $N=2, D=4$ supersymmetries unbroken. We show that, in the case of heterotic string compactifications, the perturbatively corrected entropy formula is given by the tree-level entropy formula with the tree-level coupling constant replaced by the perturbative coupling constant. In the case of type-II compactifications, we display a new entropy/area formula associated with axion-free black-hole solutions, which depends on the electric and magnetic charges as well as on certain topological data of Calabi--Yau three-folds, namely the intersection numbers, the second Chern class and the Euler number of the three-fold. We show that, for both heterotic and type-II theories, there is the possibility to relax the usual requirement of the non-vanishing of some of the charges and still have a finite entropy.hep-th/9610105CERN-TH-96-276HUB-EP-96-53SU-ITP-96-41THU-96-34oai:cds.cern.ch:3129211996-10-15
spellingShingle Particle Physics - Theory
Behrndt, K
Lópes-Cardoso, G
de Wit, Bernard
Kallosh, Renata E
Lüst, Dieter
Mohaupt, T
Classical and quantum N=2 supersymmetric black holes
title Classical and quantum N=2 supersymmetric black holes
title_full Classical and quantum N=2 supersymmetric black holes
title_fullStr Classical and quantum N=2 supersymmetric black holes
title_full_unstemmed Classical and quantum N=2 supersymmetric black holes
title_short Classical and quantum N=2 supersymmetric black holes
title_sort classical and quantum n=2 supersymmetric black holes
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/S0550-3213(97)00028-X
http://cds.cern.ch/record/312921
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