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D = 3 Unification of Curious Supergravities

We consider the dimensional reduction to D = 3 of four maximal-rank super-gravities which preserve minimal supersymmetry in D = 11, 7, 5 and 4. Such “curious” theories were investigated some time ago, and the four-dimensional one corresponds to an $ \mathcal{N}=1 $ supergravity with 7 chiral multipl...

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Detalles Bibliográficos
Autores principales: Duff, M.J., Ferrara, S., Marrani, A.
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP01(2017)023
http://cds.cern.ch/record/2228159
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author Duff, M.J.
Ferrara, S.
Marrani, A.
author_facet Duff, M.J.
Ferrara, S.
Marrani, A.
author_sort Duff, M.J.
collection CERN
description We consider the dimensional reduction to D = 3 of four maximal-rank super-gravities which preserve minimal supersymmetry in D = 11, 7, 5 and 4. Such “curious” theories were investigated some time ago, and the four-dimensional one corresponds to an $ \mathcal{N}=1 $ supergravity with 7 chiral multiplets spanning the seven-disk manifold. Recently, this latter theory provided cosmological models for α-attractors, which are based on the disk geometry with possible restrictions on the parameter α. A unified picture emerges in D = 3, where the Ehlers group of General Relativity merges with the S-, T- and U-dualities of the D = 4 parent theories.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-22281592023-10-04T07:28:10Zdoi:10.1007/JHEP01(2017)023http://cds.cern.ch/record/2228159engDuff, M.J.Ferrara, S.Marrani, A.D = 3 Unification of Curious Supergravitieshep-thParticle Physics - TheoryWe consider the dimensional reduction to D = 3 of four maximal-rank super-gravities which preserve minimal supersymmetry in D = 11, 7, 5 and 4. Such “curious” theories were investigated some time ago, and the four-dimensional one corresponds to an $ \mathcal{N}=1 $ supergravity with 7 chiral multiplets spanning the seven-disk manifold. Recently, this latter theory provided cosmological models for α-attractors, which are based on the disk geometry with possible restrictions on the parameter α. A unified picture emerges in D = 3, where the Ehlers group of General Relativity merges with the S-, T- and U-dualities of the D = 4 parent theories.We consider the dimensional reduction to D = 3 of four maximal-rank supergravities which preserve minimal supersymmetry in D = 11, 7, 5 and 4. Such "curious" theories were investigated some time ago, and the four-dimensional one corresponds to an N = 1 supergravity with 7 chiral multiplets spanning the seven-disk manifold. Recently, this latter theory provided cosmological models for alpha-attractors, which are based on the disk geometry with possible restrictions on the parameter alpha. A unified picture emerges in D = 3, where the Ehlers group of General Relativity merges with the S-, T- and U- dualities of the D = 4 parent theories.arXiv:1610.08800IMPERIAL-TP-2016-MJD-3CERN-TH-2016-225DFPD-2016-TH-18oai:cds.cern.ch:22281592016-10-27
spellingShingle hep-th
Particle Physics - Theory
Duff, M.J.
Ferrara, S.
Marrani, A.
D = 3 Unification of Curious Supergravities
title D = 3 Unification of Curious Supergravities
title_full D = 3 Unification of Curious Supergravities
title_fullStr D = 3 Unification of Curious Supergravities
title_full_unstemmed D = 3 Unification of Curious Supergravities
title_short D = 3 Unification of Curious Supergravities
title_sort d = 3 unification of curious supergravities
topic hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP01(2017)023
http://cds.cern.ch/record/2228159
work_keys_str_mv AT duffmj d3unificationofcurioussupergravities
AT ferraras d3unificationofcurioussupergravities
AT marrania d3unificationofcurioussupergravities