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No-scale D=5 supergravity from Scherk-Schwarz reduction of D=6 theories

We perform a generalized dimensional reduction of six dimensional supergravity theories to five dimensions. We consider the minimal $(2,0)$ and the maximal $(4,4)$ theories. In each case the reduction allows us to obtain gauged supergravities of no-scale type in dimension five with gauge groups that...

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Detalles Bibliográficos
Autores principales: Andrianopoli, L., Ferrara, S., Lledo, M.A.
Lenguaje:eng
Publicado: 2004
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1126-6708/2004/06/018
http://cds.cern.ch/record/739131
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author Andrianopoli, L.
Ferrara, S.
Lledo, M.A.
author_facet Andrianopoli, L.
Ferrara, S.
Lledo, M.A.
author_sort Andrianopoli, L.
collection CERN
description We perform a generalized dimensional reduction of six dimensional supergravity theories to five dimensions. We consider the minimal $(2,0)$ and the maximal $(4,4)$ theories. In each case the reduction allows us to obtain gauged supergravities of no-scale type in dimension five with gauge groups that escape previous classifications. In the minimal case, the geometric data of the reduced theory correspond to particular cases of the D=5 real special geometry. In the maximal case we find a four parameter solution which allows partial breaking of supersymmetry.
id cern-739131
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2004
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spelling cern-7391312023-03-14T20:26:13Zdoi:10.1088/1126-6708/2004/06/018http://cds.cern.ch/record/739131engAndrianopoli, L.Ferrara, S.Lledo, M.A.No-scale D=5 supergravity from Scherk-Schwarz reduction of D=6 theoriesParticle Physics - TheoryWe perform a generalized dimensional reduction of six dimensional supergravity theories to five dimensions. We consider the minimal $(2,0)$ and the maximal $(4,4)$ theories. In each case the reduction allows us to obtain gauged supergravities of no-scale type in dimension five with gauge groups that escape previous classifications. In the minimal case, the geometric data of the reduced theory correspond to particular cases of the D=5 real special geometry. In the maximal case we find a four parameter solution which allows partial breaking of supersymmetry.We perform a generalized dimensional reduction of six dimensional supergravity theories to five dimensions. We consider the minimal $(2,0)$ and the maximal $(4,4)$ theories. In each case the reduction allows us to obtain gauged supergravities of no-scale type in dimension five with gauge groups that escape previous classifications. In the minimal case, the geometric data of the reduced theory correspond to particular cases of the D=5 real special geometry. In the maximal case we find a four parameter solution which allows partial breaking of supersymmetry.hep-th/0406018CERN-PH-TH-2004-097IFIC-04-28FTUV-04-0601UCLA-04-TEP-23CERN-PH-TH-2004-097FTUV-2004-0601IFIC-2004-28UCLA-2004-TEP-23oai:cds.cern.ch:7391312004-06-01
spellingShingle Particle Physics - Theory
Andrianopoli, L.
Ferrara, S.
Lledo, M.A.
No-scale D=5 supergravity from Scherk-Schwarz reduction of D=6 theories
title No-scale D=5 supergravity from Scherk-Schwarz reduction of D=6 theories
title_full No-scale D=5 supergravity from Scherk-Schwarz reduction of D=6 theories
title_fullStr No-scale D=5 supergravity from Scherk-Schwarz reduction of D=6 theories
title_full_unstemmed No-scale D=5 supergravity from Scherk-Schwarz reduction of D=6 theories
title_short No-scale D=5 supergravity from Scherk-Schwarz reduction of D=6 theories
title_sort no-scale d=5 supergravity from scherk-schwarz reduction of d=6 theories
topic Particle Physics - Theory
url https://dx.doi.org/10.1088/1126-6708/2004/06/018
http://cds.cern.ch/record/739131
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