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Orbits and Attractors for N=2 Maxwell-Einstein Supergravity Theories in Five Dimensions

BPS and non-BPS orbits for extremal black-holes in N=2 Maxwell-Einstein supergravity theories (MESGT) in five dimensions were classified long ago by the present authors for the case of symmetric scalar manifolds. Motivated by these results and some recent work on non-supersymmetric attractors we sho...

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Autores principales: Ferrara, Sergio, Gunaydin, Murat
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nuclphysb.2006.09.016
http://cds.cern.ch/record/962085
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author Ferrara, Sergio
Gunaydin, Murat
author_facet Ferrara, Sergio
Gunaydin, Murat
author_sort Ferrara, Sergio
collection CERN
description BPS and non-BPS orbits for extremal black-holes in N=2 Maxwell-Einstein supergravity theories (MESGT) in five dimensions were classified long ago by the present authors for the case of symmetric scalar manifolds. Motivated by these results and some recent work on non-supersymmetric attractors we show that attractor equations in N=2 MESGTs in d=5 do indeed possess the distinct families of solutions with finite Bekenstein-Hawking entropy. The new non-BPS solutions have non-vanishing central charge and matter charge which is invariant under the maximal compact subgroup of the stabilizer of the non-BPS orbit. Our analysis covers all symmetric space theories G/H such that G is a symmetry of the action. These theories are in one-to-one correspondence with (Euclidean) Jordan algebras of degree three. In the particular case of N=2 MESGT with scalar manifold SU*(6)/USp(6) a duality of the two solutions with regard to N=2 and N=6 supergravity is also considered.
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spelling cern-9620852023-03-14T17:16:08Zdoi:10.1016/j.nuclphysb.2006.09.016http://cds.cern.ch/record/962085engFerrara, SergioGunaydin, MuratOrbits and Attractors for N=2 Maxwell-Einstein Supergravity Theories in Five DimensionsParticle Physics - TheoryBPS and non-BPS orbits for extremal black-holes in N=2 Maxwell-Einstein supergravity theories (MESGT) in five dimensions were classified long ago by the present authors for the case of symmetric scalar manifolds. Motivated by these results and some recent work on non-supersymmetric attractors we show that attractor equations in N=2 MESGTs in d=5 do indeed possess the distinct families of solutions with finite Bekenstein-Hawking entropy. The new non-BPS solutions have non-vanishing central charge and matter charge which is invariant under the maximal compact subgroup of the stabilizer of the non-BPS orbit. Our analysis covers all symmetric space theories G/H such that G is a symmetry of the action. These theories are in one-to-one correspondence with (Euclidean) Jordan algebras of degree three. In the particular case of N=2 MESGT with scalar manifold SU*(6)/USp(6) a duality of the two solutions with regard to N=2 and N=6 supergravity is also considered.BPS and non-BPS orbits for extremal black-holes in N=2 Maxwell-Einstein supergravity theories (MESGT) in five dimensions were classified long ago by the present authors for the case of symmetric scalar manifolds. Motivated by these results and some recent work on non-supersymmetric attractors we show that attractor equations in N=2 MESGTs in d=5 do indeed possess the distinct families of solutions with finite Bekenstein-Hawking entropy. The new non-BPS solutions have non-vanishing central charge and matter charge which is invariant under the maximal compact subgroup of the stabilizer of the non-BPS orbit. Our analysis covers all symmetric space theories G/H such that G is a symmetry of the action. These theories are in one-to-one correspondence with (Euclidean) Jordan algebras of degree three. In the particular case of N=2 MESGT with scalar manifold SU*(6)/USp(6) a duality of the two solutions with regard to N=2 and N=6 supergravity is also considered.BPS and non-BPS orbits for extremal black-holes in N=2 Maxwell–Einstein supergravity theories (MESGT) in five dimensions were classified long ago by the present authors for the case of symmetric scalar manifolds. Motivated by these results and some recent work on non-supersymmetric attractors we show that attractor equations in N=2 MESGTs in d=5 do indeed possess the distinct families of solutions with finite Bekenstein–Hawking entropy. The new non-BPS solutions have non-vanishing central charge and matter charge which is invariant under the maximal compact subgroup K˜ of the stabilizer H˜ of the non-BPS orbit. Our analysis covers all symmetric space theories G/H such that G is a symmetry of the action. These theories are in one-to-one correspondence with (Euclidean) Jordan algebras of degree three. In the particular case of N=2 MESGT with scalar manifold SU∗(6)/USp(6) a duality of the two solutions with regard to N=2 and N=6 supergravity is also considered.hep-th/0606108CERN-PH-TH-2006-107CERN-PH-TH-2006-107oai:cds.cern.ch:9620852006-06-12
spellingShingle Particle Physics - Theory
Ferrara, Sergio
Gunaydin, Murat
Orbits and Attractors for N=2 Maxwell-Einstein Supergravity Theories in Five Dimensions
title Orbits and Attractors for N=2 Maxwell-Einstein Supergravity Theories in Five Dimensions
title_full Orbits and Attractors for N=2 Maxwell-Einstein Supergravity Theories in Five Dimensions
title_fullStr Orbits and Attractors for N=2 Maxwell-Einstein Supergravity Theories in Five Dimensions
title_full_unstemmed Orbits and Attractors for N=2 Maxwell-Einstein Supergravity Theories in Five Dimensions
title_short Orbits and Attractors for N=2 Maxwell-Einstein Supergravity Theories in Five Dimensions
title_sort orbits and attractors for n=2 maxwell-einstein supergravity theories in five dimensions
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/j.nuclphysb.2006.09.016
http://cds.cern.ch/record/962085
work_keys_str_mv AT ferrarasergio orbitsandattractorsforn2maxwelleinsteinsupergravitytheoriesinfivedimensions
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