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BPS States in Superstrings with Spontaneously Broken SUSY

We show the existence of a supersymmetry-breaking mechanism in string theory, where N=4 supersymmetry is broken spontaneously to N=2 and N=1 with moduli-dependent gravitino masses. The BPS spectrum of the theory with lower supersymmetry is in one-to-one correspondence with the spectrum of the hetero...

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Autor principal: Kounnas, Costas
Lenguaje:eng
Publicado: 1997
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0920-5632(97)00413-1
http://cds.cern.ch/record/323195
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author Kounnas, Costas
author_facet Kounnas, Costas
author_sort Kounnas, Costas
collection CERN
description We show the existence of a supersymmetry-breaking mechanism in string theory, where N=4 supersymmetry is broken spontaneously to N=2 and N=1 with moduli-dependent gravitino masses. The BPS spectrum of the theory with lower supersymmetry is in one-to-one correspondence with the spectrum of the heterotic N=4 string. The mass splitting of the N=4 spectrum depends on the moduli as well as the three R-symmetry charges. In the case of N=4 \to N=2, the perturbative N=2 prepotential is determined by the perturbative N=4 BPS states. This observation led us to suggest a method that determines the exact non-perturbative prepotential of the effective N=2 supergravity using the shifted spectrum of the non-perturbative BPS states of the underlying N=4 theory.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1997
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spelling cern-3231952023-03-12T05:50:59Zdoi:10.1016/S0920-5632(97)00413-1http://cds.cern.ch/record/323195engKounnas, CostasBPS States in Superstrings with Spontaneously Broken SUSYParticle Physics - TheoryWe show the existence of a supersymmetry-breaking mechanism in string theory, where N=4 supersymmetry is broken spontaneously to N=2 and N=1 with moduli-dependent gravitino masses. The BPS spectrum of the theory with lower supersymmetry is in one-to-one correspondence with the spectrum of the heterotic N=4 string. The mass splitting of the N=4 spectrum depends on the moduli as well as the three R-symmetry charges. In the case of N=4 \to N=2, the perturbative N=2 prepotential is determined by the perturbative N=4 BPS states. This observation led us to suggest a method that determines the exact non-perturbative prepotential of the effective N=2 supergravity using the shifted spectrum of the non-perturbative BPS states of the underlying N=4 theory.We show the existence of a supersymmetry-breaking mechanism in string theory, where N=4 supersymmetry is broken spontaneously to N=2 and N=1 with moduli-dependent gravitino masses. The BPS spectrum of the theory with lower supersymmetry is in one-to-one correspondence with the spectrum of the heterotic N=4 string. The mass splitting of the N=4 spectrum depends on the moduli as well as the three R-symmetry charges. In the case of N=4 \to N=2, the perturbative N=2 prepotential is determined by the perturbative N=4 BPS states. This observation led us to suggest a method that determines the exact non-perturbative prepotential of the effective N=2 supergravity using the shifted spectrum of the non-perturbative BPS states of the underlying N=4 theory.hep-th/9703198CERN-TH-97-057LPTENS-97-16CERN-TH-97-057LPT-ENS-97-16oai:cds.cern.ch:3231951997-03-28
spellingShingle Particle Physics - Theory
Kounnas, Costas
BPS States in Superstrings with Spontaneously Broken SUSY
title BPS States in Superstrings with Spontaneously Broken SUSY
title_full BPS States in Superstrings with Spontaneously Broken SUSY
title_fullStr BPS States in Superstrings with Spontaneously Broken SUSY
title_full_unstemmed BPS States in Superstrings with Spontaneously Broken SUSY
title_short BPS States in Superstrings with Spontaneously Broken SUSY
title_sort bps states in superstrings with spontaneously broken susy
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/S0920-5632(97)00413-1
http://cds.cern.ch/record/323195
work_keys_str_mv AT kounnascostas bpsstatesinsuperstringswithspontaneouslybrokensusy