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Iwasawa nilpotency degree of non compact symmetric cosets in N-extended Supergravity

We analyze the polynomial part of the Iwasawa realization of the coset representative of non compact symmetric Riemannian spaces. We start by studying the role of Kostant's principal SU(2)_P subalgebra of simple Lie algebras, and how it determines the structure of the nilpotent subalgebras. Thi...

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Autores principales: Cacciatori, Sergio Luigi, Cerchiai, Bianca Letizia, Ferrara, Sergio, Marrani, Alessio
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1002/prop.201400010
http://cds.cern.ch/record/1662862
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author Cacciatori, Sergio Luigi
Cerchiai, Bianca Letizia
Ferrara, Sergio
Marrani, Alessio
author_facet Cacciatori, Sergio Luigi
Cerchiai, Bianca Letizia
Ferrara, Sergio
Marrani, Alessio
author_sort Cacciatori, Sergio Luigi
collection CERN
description We analyze the polynomial part of the Iwasawa realization of the coset representative of non compact symmetric Riemannian spaces. We start by studying the role of Kostant's principal SU(2)_P subalgebra of simple Lie algebras, and how it determines the structure of the nilpotent subalgebras. This allows us to compute the maximal degree of the polynomials for all faithful representations of Lie algebras. In particular the metric coefficients are related to the scalar kinetic terms while the representation of electric and magnetic charges is related to the coupling of scalars to vector field strengths as they appear in the Lagrangian. We consider symmetric scalar manifolds in N-extended supergravity in various space-time dimensions, elucidating various relations with the underlying Jordan algebras and normed Hurwitz algebras. For magic supergravity theories, our results are consistent with the Tits-Satake projection of symmetric spaces and the nilpotency degree turns out to depend only on the space-time dimension of the theory. These results should be helpful within a deeper investigation of the corresponding supergravity theory, e.g. in studying ultraviolet properties of maximal supergravity in various dimensions.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
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spelling cern-16628622023-03-14T18:25:59Zdoi:10.1002/prop.201400010http://cds.cern.ch/record/1662862engCacciatori, Sergio LuigiCerchiai, Bianca LetiziaFerrara, SergioMarrani, AlessioIwasawa nilpotency degree of non compact symmetric cosets in N-extended SupergravityParticle Physics - TheoryWe analyze the polynomial part of the Iwasawa realization of the coset representative of non compact symmetric Riemannian spaces. We start by studying the role of Kostant's principal SU(2)_P subalgebra of simple Lie algebras, and how it determines the structure of the nilpotent subalgebras. This allows us to compute the maximal degree of the polynomials for all faithful representations of Lie algebras. In particular the metric coefficients are related to the scalar kinetic terms while the representation of electric and magnetic charges is related to the coupling of scalars to vector field strengths as they appear in the Lagrangian. We consider symmetric scalar manifolds in N-extended supergravity in various space-time dimensions, elucidating various relations with the underlying Jordan algebras and normed Hurwitz algebras. For magic supergravity theories, our results are consistent with the Tits-Satake projection of symmetric spaces and the nilpotency degree turns out to depend only on the space-time dimension of the theory. These results should be helpful within a deeper investigation of the corresponding supergravity theory, e.g. in studying ultraviolet properties of maximal supergravity in various dimensions.We analyze the polynomial part of the Iwasawa realization of the coset representative of non compact symmetric Riemannian spaces. We start by studying the role of Kostant's principal SU(2)_P subalgebra of simple Lie algebras, and how it determines the structure of the nilpotent subalgebras. This allows us to compute the maximal degree of the polynomials for all faithful representations of Lie algebras. In particular the metric coefficients are related to the scalar kinetic terms while the representation of electric and magnetic charges is related to the coupling of scalars to vector field strengths as they appear in the Lagrangian. We consider symmetric scalar manifolds in N-extended supergravity in various space-time dimensions, elucidating various relations with the underlying Jordan algebras and normed Hurwitz algebras. For magic supergravity theories, our results are consistent with the Tits-Satake projection of symmetric spaces and the nilpotency degree turns out to depend only on the space-time dimension of the theory. These results should be helpful within a deeper investigation of the corresponding supergravity theory, e.g. in studying ultraviolet properties of maximal supergravity in various dimensions.arXiv:1402.5063CERN-PH-TH-2014-026CERN-PH-TH-2014-026oai:cds.cern.ch:16628622014-02-20
spellingShingle Particle Physics - Theory
Cacciatori, Sergio Luigi
Cerchiai, Bianca Letizia
Ferrara, Sergio
Marrani, Alessio
Iwasawa nilpotency degree of non compact symmetric cosets in N-extended Supergravity
title Iwasawa nilpotency degree of non compact symmetric cosets in N-extended Supergravity
title_full Iwasawa nilpotency degree of non compact symmetric cosets in N-extended Supergravity
title_fullStr Iwasawa nilpotency degree of non compact symmetric cosets in N-extended Supergravity
title_full_unstemmed Iwasawa nilpotency degree of non compact symmetric cosets in N-extended Supergravity
title_short Iwasawa nilpotency degree of non compact symmetric cosets in N-extended Supergravity
title_sort iwasawa nilpotency degree of non compact symmetric cosets in n-extended supergravity
topic Particle Physics - Theory
url https://dx.doi.org/10.1002/prop.201400010
http://cds.cern.ch/record/1662862
work_keys_str_mv AT cacciatorisergioluigi iwasawanilpotencydegreeofnoncompactsymmetriccosetsinnextendedsupergravity
AT cerchiaibiancaletizia iwasawanilpotencydegreeofnoncompactsymmetriccosetsinnextendedsupergravity
AT ferrarasergio iwasawanilpotencydegreeofnoncompactsymmetriccosetsinnextendedsupergravity
AT marranialessio iwasawanilpotencydegreeofnoncompactsymmetriccosetsinnextendedsupergravity