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Non-BPS Branes of Supersymmetric Brane Worlds

We consider five-dimensional brane worlds with N=2 gauged supergravity in the bulk coupled supersymmetrically to two boundary branes at the fixed points of a Z_2 symmetry. We analyse two mechanisms that break supersymmetry either by choosing flipped fermionic boundary conditions on the boundary bran...

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Detalles Bibliográficos
Autores principales: Brax, Philippe, Falkowski, Adam, Lalak, Zygmunt
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0370-2693(01)01184-4
http://cds.cern.ch/record/512212
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author Brax, Philippe
Falkowski, Adam
Lalak, Zygmunt
author_facet Brax, Philippe
Falkowski, Adam
Lalak, Zygmunt
author_sort Brax, Philippe
collection CERN
description We consider five-dimensional brane worlds with N=2 gauged supergravity in the bulk coupled supersymmetrically to two boundary branes at the fixed points of a Z_2 symmetry. We analyse two mechanisms that break supersymmetry either by choosing flipped fermionic boundary conditions on the boundary branes or by modifying the gravitino variation to include both Z_2-odd and Z_2-even operators. In all cases we find the corresponding background. Including an even part in the gravitino variation leads to tilted branes. Choosing the flipped boundary conditions leads to AdS_4 branes and stabilized radion in the detuned case, when the expectation value of the even variation is nonzero. Another solution has the interpretation of moving AdS_4 branes separated by a horizon. The solution with moving branes separated by a horizon can be extended to the tuned case. In the presence of a horizon, temperature mediation communicates supersymmetry breakdown to the branes.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-5122122023-03-14T18:46:03Zdoi:10.1016/S0370-2693(01)01184-4http://cds.cern.ch/record/512212engBrax, PhilippeFalkowski, AdamLalak, ZygmuntNon-BPS Branes of Supersymmetric Brane WorldsParticle Physics - TheoryWe consider five-dimensional brane worlds with N=2 gauged supergravity in the bulk coupled supersymmetrically to two boundary branes at the fixed points of a Z_2 symmetry. We analyse two mechanisms that break supersymmetry either by choosing flipped fermionic boundary conditions on the boundary branes or by modifying the gravitino variation to include both Z_2-odd and Z_2-even operators. In all cases we find the corresponding background. Including an even part in the gravitino variation leads to tilted branes. Choosing the flipped boundary conditions leads to AdS_4 branes and stabilized radion in the detuned case, when the expectation value of the even variation is nonzero. Another solution has the interpretation of moving AdS_4 branes separated by a horizon. The solution with moving branes separated by a horizon can be extended to the tuned case. In the presence of a horizon, temperature mediation communicates supersymmetry breakdown to the branes.We consider five-dimensional brane worlds with N=2 gauged supergravity in the bulk coupled supersymmetrically to two boundary branes at the fixed points of a Z_2 symmetry. We analyse two mechanisms that break supersymmetry either by choosing flipped fermionic boundary conditions on the boundary branes or by modifying the gravitino variation to include both Z_2-odd and Z_2-even operators. In all cases we find the corresponding background. Including an even part in the gravitino variation leads to tilted branes. Choosing the flipped boundary conditions leads to AdS_4 branes and stabilized radion in the detuned case, when the expectation value of the even variation is nonzero. Another solution has the interpretation of moving AdS_4 branes separated by a horizon. The solution with moving branes separated by a horizon can be extended to the tuned case. In the presence of a horizon, temperature mediation communicates supersymmetry breakdown to the branes.We consider five-dimensional brane worlds with N =2 gauged supergravity in the bulk coupled supersymmetrically to two boundary branes at the fixed points of a Z 2 symmetry. We analyse two mechanisms that break supersymmetry either by choosing flipped fermionic boundary conditions on the boundary branes or by modifying the gravitino variation to include both Z 2 -odd and Z 2 -even operators. In all cases we find the corresponding background. Including an even part in the gravitino variation leads to tilted branes. Choosing the flipped boundary conditions leads to AdS 4 branes and stabilized radion in the detuned case, when the expectation value of the even variation is nonzero. Another solution has the interpretation of moving AdS 4 branes separated by a horizon. The solution with moving branes separated by a horizon can be extended to the tuned case. In the presence of a horizon, temperature mediation communicates supersymmetry breakdown to the branes.hep-th/0107257CERN-TH-2001-198CERN-TH-2001-198SACLAY-SPHT-T-2001-081oai:cds.cern.ch:5122122001-07-30
spellingShingle Particle Physics - Theory
Brax, Philippe
Falkowski, Adam
Lalak, Zygmunt
Non-BPS Branes of Supersymmetric Brane Worlds
title Non-BPS Branes of Supersymmetric Brane Worlds
title_full Non-BPS Branes of Supersymmetric Brane Worlds
title_fullStr Non-BPS Branes of Supersymmetric Brane Worlds
title_full_unstemmed Non-BPS Branes of Supersymmetric Brane Worlds
title_short Non-BPS Branes of Supersymmetric Brane Worlds
title_sort non-bps branes of supersymmetric brane worlds
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/S0370-2693(01)01184-4
http://cds.cern.ch/record/512212
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AT falkowskiadam nonbpsbranesofsupersymmetricbraneworlds
AT lalakzygmunt nonbpsbranesofsupersymmetricbraneworlds