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Fake Superpotential for Large and Small Extremal Black Holes

We consider the fist order, gradient-flow, description of the scalar fields coupled to spherically symmetric, asymptotically flat black holes in extended supergravities. Using the identification of the fake superpotential with Hamilton's characteristic function we clarify some of its general pr...

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Autores principales: Andrianopoli, L., D'Auria, R., Ferrara, S., Trigiante, M.
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: JHEP 2010
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP08(2010)126
http://cds.cern.ch/record/1244731
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author Andrianopoli, L.
D'Auria, R.
Ferrara, S.
Trigiante, M.
author_facet Andrianopoli, L.
D'Auria, R.
Ferrara, S.
Trigiante, M.
author_sort Andrianopoli, L.
collection CERN
description We consider the fist order, gradient-flow, description of the scalar fields coupled to spherically symmetric, asymptotically flat black holes in extended supergravities. Using the identification of the fake superpotential with Hamilton's characteristic function we clarify some of its general properties, showing in particular (besides reviewing the issue of its duality invariance) that W has the properties of a Liapunov's function, which implies that its extrema (associated with the horizon of extremal black holes) are asymptotically stable equilibrium points of the corresponding first order dynamical system (in the sense of Liapunov). Moreover, we show that the fake superpotential W has, along the entire radial flow, the same flat directions which exist at the attractor point. This allows to study properties of the ADM mass also for small black holes where in fact W has no critical points at finite distance in moduli space. In particular the W function for small non-BPS black holes can always be computed analytically, unlike for the large black-hole case.
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spelling cern-12447312023-03-14T19:43:37Z doi:10.1007/JHEP08(2010)126 http://cds.cern.ch/record/1244731 eng Andrianopoli, L. D'Auria, R. Ferrara, S. Trigiante, M. Fake Superpotential for Large and Small Extremal Black Holes Particle Physics - Theory We consider the fist order, gradient-flow, description of the scalar fields coupled to spherically symmetric, asymptotically flat black holes in extended supergravities. Using the identification of the fake superpotential with Hamilton's characteristic function we clarify some of its general properties, showing in particular (besides reviewing the issue of its duality invariance) that W has the properties of a Liapunov's function, which implies that its extrema (associated with the horizon of extremal black holes) are asymptotically stable equilibrium points of the corresponding first order dynamical system (in the sense of Liapunov). Moreover, we show that the fake superpotential W has, along the entire radial flow, the same flat directions which exist at the attractor point. This allows to study properties of the ADM mass also for small black holes where in fact W has no critical points at finite distance in moduli space. In particular the W function for small non-BPS black holes can always be computed analytically, unlike for the large black-hole case. We consider the fist order, gradient-flow, description of the scalar fields coupled to spherically symmetric, asymptotically flat black holes in extended supergravities. Using the identification of the fake superpotential with Hamilton's characteristic function we clarify some of its general properties, showing in particular (besides reviewing the issue of its duality invariance) that W has the properties of a Liapunov's function, which implies that its extrema (associated with the horizon of extremal black holes) are asymptotically stable equilibrium points of the corresponding first order dynamical system (in the sense of Liapunov). Moreover, we show that the fake superpotential W has, along the entire radial flow, the same flat directions which exist at the attractor point. This allows to study properties of the ADM mass also for small black holes where in fact W has no critical points at finite distance in moduli space. In particular the W function for small non-BPS black holes can always be computed analytically, unlike for the large black-hole case. info:eu-repo/grantAgreement/EC/FP7/226455 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1244731 JHEP JHEP, (2010) pp. 126 2010-02-24
spellingShingle Particle Physics - Theory
Andrianopoli, L.
D'Auria, R.
Ferrara, S.
Trigiante, M.
Fake Superpotential for Large and Small Extremal Black Holes
title Fake Superpotential for Large and Small Extremal Black Holes
title_full Fake Superpotential for Large and Small Extremal Black Holes
title_fullStr Fake Superpotential for Large and Small Extremal Black Holes
title_full_unstemmed Fake Superpotential for Large and Small Extremal Black Holes
title_short Fake Superpotential for Large and Small Extremal Black Holes
title_sort fake superpotential for large and small extremal black holes
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP08(2010)126
http://cds.cern.ch/record/1244731
http://cds.cern.ch/record/1244731
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AT trigiantem fakesuperpotentialforlargeandsmallextremalblackholes