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Generalized non-supersymmetric flux vacua
We discuss a novel strategy to construct 4D N=0 stable flux vacua of type II string theory, based on the existence of BPS bounds for probe D-branes in some of these backgrounds. In particular, we consider compactifications where D-branes filling the 4D space-time obey the same BPS bound as they woul...
Autores principales: | , , , |
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Lenguaje: | eng |
Publicado: |
2008
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1088/1126-6708/2008/11/021 http://cds.cern.ch/record/1117880 |
_version_ | 1780914459407024128 |
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author | Lust, Dieter Marchesano, Fernando Martucci, Luca Tsimpis, Dimitrios |
author_facet | Lust, Dieter Marchesano, Fernando Martucci, Luca Tsimpis, Dimitrios |
author_sort | Lust, Dieter |
collection | CERN |
description | We discuss a novel strategy to construct 4D N=0 stable flux vacua of type II string theory, based on the existence of BPS bounds for probe D-branes in some of these backgrounds. In particular, we consider compactifications where D-branes filling the 4D space-time obey the same BPS bound as they would in an N=1 compactification, while other D-branes, like those appearing as domain walls from the 4D perspective, can no longer be BPS. We construct a subfamily of such backgrounds giving rise to 4D N=0 Minkowski no-scale vacua, generalizing the well-known case of type IIB on a warped Calabi-Yau. We provide several explicit examples of these constructions, and compute quantities of phenomenological interest like flux-induced soft terms on D-branes. Our results have a natural, simple description in the language of Generalized Complex Geometry, and in particular in terms of D-brane generalized calibrations. Finally, we extend the integrability theorems for 10D supersymmetric type II backgrounds to the N=0 case and use the results to construct a new class of N=0 AdS4 compactifications. |
id | cern-1117880 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2008 |
record_format | invenio |
spelling | cern-11178802023-03-12T04:43:09Zdoi:10.1088/1126-6708/2008/11/021http://cds.cern.ch/record/1117880engLust, DieterMarchesano, FernandoMartucci, LucaTsimpis, DimitriosGeneralized non-supersymmetric flux vacuaParticle Physics - TheoryWe discuss a novel strategy to construct 4D N=0 stable flux vacua of type II string theory, based on the existence of BPS bounds for probe D-branes in some of these backgrounds. In particular, we consider compactifications where D-branes filling the 4D space-time obey the same BPS bound as they would in an N=1 compactification, while other D-branes, like those appearing as domain walls from the 4D perspective, can no longer be BPS. We construct a subfamily of such backgrounds giving rise to 4D N=0 Minkowski no-scale vacua, generalizing the well-known case of type IIB on a warped Calabi-Yau. We provide several explicit examples of these constructions, and compute quantities of phenomenological interest like flux-induced soft terms on D-branes. Our results have a natural, simple description in the language of Generalized Complex Geometry, and in particular in terms of D-brane generalized calibrations. Finally, we extend the integrability theorems for 10D supersymmetric type II backgrounds to the N=0 case and use the results to construct a new class of N=0 AdS4 compactifications.We discuss a novel strategy to construct 4D N=0 stable flux vacua of type II string theory, based on the existence of BPS bounds for probe D-branes in some of these backgrounds. In particular, we consider compactifications where D-branes filling the 4D space-time obey the same BPS bound as they would in an N=1 compactification, while other D-branes, like those appearing as domain walls from the 4D perspective, can no longer be BPS. We construct a subfamily of such backgrounds giving rise to 4D N=0 Minkowski no-scale vacua, generalizing the well-known case of type IIB on a warped Calabi-Yau. We provide several explicit examples of these constructions, and compute quantities of phenomenological interest like flux-induced soft terms on D-branes. Our results have a natural, simple description in the language of Generalized Complex Geometry, and in particular in terms of D-brane generalized calibrations. Finally, we extend the integrability theorems for 10D supersymmetric type II backgrounds to the N=0 case and use the results to construct a new class of N=0 AdS4 compactifications.arXiv:0807.4540MPP-2008-87LMU-ASC-41-08CERN-PH-TH-2008-162CERN-PH-TH-2008-162LMU-ASC 41-08MPP-2008-87oai:cds.cern.ch:11178802008-07-30 |
spellingShingle | Particle Physics - Theory Lust, Dieter Marchesano, Fernando Martucci, Luca Tsimpis, Dimitrios Generalized non-supersymmetric flux vacua |
title | Generalized non-supersymmetric flux vacua |
title_full | Generalized non-supersymmetric flux vacua |
title_fullStr | Generalized non-supersymmetric flux vacua |
title_full_unstemmed | Generalized non-supersymmetric flux vacua |
title_short | Generalized non-supersymmetric flux vacua |
title_sort | generalized non-supersymmetric flux vacua |
topic | Particle Physics - Theory |
url | https://dx.doi.org/10.1088/1126-6708/2008/11/021 http://cds.cern.ch/record/1117880 |
work_keys_str_mv | AT lustdieter generalizednonsupersymmetricfluxvacua AT marchesanofernando generalizednonsupersymmetricfluxvacua AT martucciluca generalizednonsupersymmetricfluxvacua AT tsimpisdimitrios generalizednonsupersymmetricfluxvacua |