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On the Gauged Kahler Isometry in Minimal Supergravity Models of Inflation

In this paper we address the question how to discriminate whether the gauged isometry group G_Sigma of the Kahler manifold Sigma that produces a D-type inflaton potential in a Minimal Supergravity Model is elliptic, hyperbolic or parabolic. We show that the classification of isometries of symmetric...

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Detalles Bibliográficos
Autores principales: Ferrara, Sergio, Fre, Pietro, Sorin, Alexander S.
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1002/prop.201400003
http://cds.cern.ch/record/1641264
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author Ferrara, Sergio
Fre, Pietro
Sorin, Alexander S.
author_facet Ferrara, Sergio
Fre, Pietro
Sorin, Alexander S.
author_sort Ferrara, Sergio
collection CERN
description In this paper we address the question how to discriminate whether the gauged isometry group G_Sigma of the Kahler manifold Sigma that produces a D-type inflaton potential in a Minimal Supergravity Model is elliptic, hyperbolic or parabolic. We show that the classification of isometries of symmetric cosets can be extended to non symmetric Sigma.s if these manifolds satisfy additional mathematical restrictions. The classification criteria established in the mathematical literature are coherent with simple criteria formulated in terms of the asymptotic behavior of the Kahler potential K(C) = 2 J(C) where the real scalar field C encodes the inflaton field. As a by product of our analysis we show that all phenomenologically admissible potentials for the description of inflation and in particular alpha-attractors are mostly obtained from the gauging of a parabolic isometry. The requirement of regularity of the manifold Sigma poses strong constraints on the alpha-attractors and reduces their space considerably. Curiously there is a unique integrable alpha-attractor corresponding to a particular value of this parameter.
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spelling cern-16412642021-05-03T20:12:18Zdoi:10.1002/prop.201400003http://cds.cern.ch/record/1641264engFerrara, SergioFre, PietroSorin, Alexander S.On the Gauged Kahler Isometry in Minimal Supergravity Models of InflationParticle Physics - TheoryIn this paper we address the question how to discriminate whether the gauged isometry group G_Sigma of the Kahler manifold Sigma that produces a D-type inflaton potential in a Minimal Supergravity Model is elliptic, hyperbolic or parabolic. We show that the classification of isometries of symmetric cosets can be extended to non symmetric Sigma.s if these manifolds satisfy additional mathematical restrictions. The classification criteria established in the mathematical literature are coherent with simple criteria formulated in terms of the asymptotic behavior of the Kahler potential K(C) = 2 J(C) where the real scalar field C encodes the inflaton field. As a by product of our analysis we show that all phenomenologically admissible potentials for the description of inflation and in particular alpha-attractors are mostly obtained from the gauging of a parabolic isometry. The requirement of regularity of the manifold Sigma poses strong constraints on the alpha-attractors and reduces their space considerably. Curiously there is a unique integrable alpha-attractor corresponding to a particular value of this parameter.arXiv:1401.1201CERN-PH-TH-2014-001oai:cds.cern.ch:16412642014-01-04
spellingShingle Particle Physics - Theory
Ferrara, Sergio
Fre, Pietro
Sorin, Alexander S.
On the Gauged Kahler Isometry in Minimal Supergravity Models of Inflation
title On the Gauged Kahler Isometry in Minimal Supergravity Models of Inflation
title_full On the Gauged Kahler Isometry in Minimal Supergravity Models of Inflation
title_fullStr On the Gauged Kahler Isometry in Minimal Supergravity Models of Inflation
title_full_unstemmed On the Gauged Kahler Isometry in Minimal Supergravity Models of Inflation
title_short On the Gauged Kahler Isometry in Minimal Supergravity Models of Inflation
title_sort on the gauged kahler isometry in minimal supergravity models of inflation
topic Particle Physics - Theory
url https://dx.doi.org/10.1002/prop.201400003
http://cds.cern.ch/record/1641264
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