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Duality transformations in supersymmetric Yang-Mills theories coupled to supergravity

We consider duality transformations in N=2, d=4 Yang-Mills theory coupled to N=2 supergravity. A symplectic and coordinate covariant framework is established, which allows one to discuss stringy `classical and quantum duality symmetries' (monodromies), incorporating T and S dualities. In partic...

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Autores principales: Ceresole, Anna, D'Auria, R., Ferrara, S., Van Proeyen, Antoine
Lenguaje:eng
Publicado: 1995
Materias:
Acceso en línea:https://dx.doi.org/10.1016/0550-3213(95)00175-R
http://cds.cern.ch/record/276909
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author Ceresole, Anna
D'Auria, R.
Ferrara, S.
Van Proeyen, Antoine
author_facet Ceresole, Anna
D'Auria, R.
Ferrara, S.
Van Proeyen, Antoine
author_sort Ceresole, Anna
collection CERN
description We consider duality transformations in N=2, d=4 Yang-Mills theory coupled to N=2 supergravity. A symplectic and coordinate covariant framework is established, which allows one to discuss stringy `classical and quantum duality symmetries' (monodromies), incorporating T and S dualities. In particular, we shall be able to study theories (like N=2 heterotic strings) which are formulated in symplectic basis where a `holomorphic prepotential' F does not exist, and yet give general expressions for all relevant physical quantities. Duality transformations and symmetries for the N=1 matter coupled Yang--Mills supergravity system are also exhibited. The implications of duality symmetry on all N>2 extended supergravities are briefly mentioned. We finally give the general form of the central charge and the N=2 semiclassical spectrum of the dyonic BPS saturated states (as it comes by truncation of the N=4 spectrum).
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publishDate 1995
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spelling cern-2769092023-03-14T20:43:45Zdoi:10.1016/0550-3213(95)00175-Rhttp://cds.cern.ch/record/276909engCeresole, AnnaD'Auria, R.Ferrara, S.Van Proeyen, AntoineDuality transformations in supersymmetric Yang-Mills theories coupled to supergravityParticle Physics - TheoryWe consider duality transformations in N=2, d=4 Yang-Mills theory coupled to N=2 supergravity. A symplectic and coordinate covariant framework is established, which allows one to discuss stringy `classical and quantum duality symmetries' (monodromies), incorporating T and S dualities. In particular, we shall be able to study theories (like N=2 heterotic strings) which are formulated in symplectic basis where a `holomorphic prepotential' F does not exist, and yet give general expressions for all relevant physical quantities. Duality transformations and symmetries for the N=1 matter coupled Yang--Mills supergravity system are also exhibited. The implications of duality symmetry on all N>2 extended supergravities are briefly mentioned. We finally give the general form of the central charge and the N=2 semiclassical spectrum of the dyonic BPS saturated states (as it comes by truncation of the N=4 spectrum).We consider duality transformations in N = 2, d = 4 Yang-Mills theory coupled to N = 2 supergravity. A symplectic and coordinate covariant framework is established, which allows one to discuss stringy “classical and quantum duality symmetries” (monodromies), incorporating T - and S -dualities. In particular, we shall be able to study theories (like N = 2 heterotic strings) which are formulated in symplectic basis where a “holomorphic prepotential” F does not exist, and yet give general expressions for all relevant physical quantities. Duality transformations and symmetries for the N = 1 matter coupled Yang-Mills supergravity system are also exhibited. The implications of duality symmetry on all N > 2 extended supergravities are briefly mentioned. We finally give the general form of the central charge and the N = 2 semiclassical spectrum of the dyonic BPS saturated states (as it comes by truncation of the N = 4 spectrum).We consider duality transformations in N=2, d=4 Yang--Mills theory coupled to N=2 supergravity. A symplectic and coordinate covariant framework is established, which allows one to discuss stringy `classical and quantum duality symmetries' (monodromies), incorporating T and S dualities. In particular, we shall be able to study theories (like N=2 heterotic strings) which are formulated in symplectic basis where a `holomorphic prepotential' F does not exist, and yet give general expressions for all relevant physical quantities. Duality transformations and symmetries for the N=1 matter coupled Yang--Mills supergravity system are also exhibited. The implications of duality symmetry on all N>2 extended supergravities are briefly mentioned. We finally give the general form of the central charge and the N=2 semiclassical spectrum of the dyonic BPS saturated states (as it comes by truncation of the N=4 spectrum).hep-th/9502072CERN-TH-7547-94POLFIS-TH-01-95UCLA-94-TEP-45AKUL-TF-95-4POLFIS-TH.-01-95UCLA-94-TEP-45CERN-TH-7547-94KUL-TF-95-04POLFIS-TH-95-1UCLA-94-TEP-45oai:cds.cern.ch:2769091995-02-13
spellingShingle Particle Physics - Theory
Ceresole, Anna
D'Auria, R.
Ferrara, S.
Van Proeyen, Antoine
Duality transformations in supersymmetric Yang-Mills theories coupled to supergravity
title Duality transformations in supersymmetric Yang-Mills theories coupled to supergravity
title_full Duality transformations in supersymmetric Yang-Mills theories coupled to supergravity
title_fullStr Duality transformations in supersymmetric Yang-Mills theories coupled to supergravity
title_full_unstemmed Duality transformations in supersymmetric Yang-Mills theories coupled to supergravity
title_short Duality transformations in supersymmetric Yang-Mills theories coupled to supergravity
title_sort duality transformations in supersymmetric yang-mills theories coupled to supergravity
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/0550-3213(95)00175-R
http://cds.cern.ch/record/276909
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AT dauriar dualitytransformationsinsupersymmetricyangmillstheoriescoupledtosupergravity
AT ferraras dualitytransformationsinsupersymmetricyangmillstheoriescoupledtosupergravity
AT vanproeyenantoine dualitytransformationsinsupersymmetricyangmillstheoriescoupledtosupergravity