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On the Scalar Manifold of Exceptional Supergravity

We construct two parametrizations of the non compact exceptional Lie group G=E7(-25), based on a fibration which has the maximal compact subgroup K=(E6 x U(1))/Z_3 as a fiber. It is well known that G plays an important role in the N=2 d=4 magic exceptional supergravity, where it describes the U-dual...

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Autores principales: Cacciatori, Sergio L, Cerchiai, Bianca L, Marrani, Alessio
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:https://dx.doi.org/10.1002/prop.201200026
http://cds.cern.ch/record/1420870
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author Cacciatori, Sergio L
Cerchiai, Bianca L
Marrani, Alessio
author_facet Cacciatori, Sergio L
Cerchiai, Bianca L
Marrani, Alessio
author_sort Cacciatori, Sergio L
collection CERN
description We construct two parametrizations of the non compact exceptional Lie group G=E7(-25), based on a fibration which has the maximal compact subgroup K=(E6 x U(1))/Z_3 as a fiber. It is well known that G plays an important role in the N=2 d=4 magic exceptional supergravity, where it describes the U-duality of the theory and where the symmetric space M=G/K gives the vector multiplets' scalar manifold. First, by making use of the exponential map, we compute a realization of G/K, that is based on the E6 invariant d-tensor, and hence exhibits the maximal possible manifest [(E6 x U(1))/Z_3]-covariance. This provides a basis for the corresponding supergravity theory, which is the analogue of the Calabi-Vesentini coordinates. Then we study the Iwasawa decomposition. Its main feature is that it is SO(8)-covariant and therefore it highlights the role of triality. Along the way we analyze the relevant chain of maximal embeddings which leads to SO(8). It is worth noticing that being based on the properties of a "mixed" Freudenthal-Tits magic square, the whole procedure can be generalized to a broader class of groups of type E7.
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spelling cern-14208702019-09-30T06:29:59Zdoi:10.1002/prop.201200026http://cds.cern.ch/record/1420870engCacciatori, Sergio LCerchiai, Bianca LMarrani, AlessioOn the Scalar Manifold of Exceptional SupergravityParticle Physics - TheoryWe construct two parametrizations of the non compact exceptional Lie group G=E7(-25), based on a fibration which has the maximal compact subgroup K=(E6 x U(1))/Z_3 as a fiber. It is well known that G plays an important role in the N=2 d=4 magic exceptional supergravity, where it describes the U-duality of the theory and where the symmetric space M=G/K gives the vector multiplets' scalar manifold. First, by making use of the exponential map, we compute a realization of G/K, that is based on the E6 invariant d-tensor, and hence exhibits the maximal possible manifest [(E6 x U(1))/Z_3]-covariance. This provides a basis for the corresponding supergravity theory, which is the analogue of the Calabi-Vesentini coordinates. Then we study the Iwasawa decomposition. Its main feature is that it is SO(8)-covariant and therefore it highlights the role of triality. Along the way we analyze the relevant chain of maximal embeddings which leads to SO(8). It is worth noticing that being based on the properties of a "mixed" Freudenthal-Tits magic square, the whole procedure can be generalized to a broader class of groups of type E7.arXiv:1201.6667CERN-PH-TH-2012-023oai:cds.cern.ch:14208702012-02-01
spellingShingle Particle Physics - Theory
Cacciatori, Sergio L
Cerchiai, Bianca L
Marrani, Alessio
On the Scalar Manifold of Exceptional Supergravity
title On the Scalar Manifold of Exceptional Supergravity
title_full On the Scalar Manifold of Exceptional Supergravity
title_fullStr On the Scalar Manifold of Exceptional Supergravity
title_full_unstemmed On the Scalar Manifold of Exceptional Supergravity
title_short On the Scalar Manifold of Exceptional Supergravity
title_sort on the scalar manifold of exceptional supergravity
topic Particle Physics - Theory
url https://dx.doi.org/10.1002/prop.201200026
http://cds.cern.ch/record/1420870
work_keys_str_mv AT cacciatorisergiol onthescalarmanifoldofexceptionalsupergravity
AT cerchiaibiancal onthescalarmanifoldofexceptionalsupergravity
AT marranialessio onthescalarmanifoldofexceptionalsupergravity