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Non-perturbative Temperature Instabilities in N=4 Strings

We derive a universal thermal effective potential, which describes all possible high-temperature instabilities of the known N=4 superstrings, using the properties of gauged N=4 supergravity. These instabilities are due to three non-perturbative thermal dyonic modes, which become tachyonic in a regio...

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Detalles Bibliográficos
Autores principales: Antoniadis, Ignatios, Derendinger, J.Pierre, Kounnas, Costas
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0550-3213(99)00171-6
http://cds.cern.ch/record/378388
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author Antoniadis, Ignatios
Derendinger, J.Pierre
Kounnas, Costas
author_facet Antoniadis, Ignatios
Derendinger, J.Pierre
Kounnas, Costas
author_sort Antoniadis, Ignatios
collection CERN
description We derive a universal thermal effective potential, which describes all possible high-temperature instabilities of the known N=4 superstrings, using the properties of gauged N=4 supergravity. These instabilities are due to three non-perturbative thermal dyonic modes, which become tachyonic in a region of the thermal moduli space. The latter is described by three moduli, s,t,u, which are common to all non-perturbative dual-equivalent strings with N=4 supersymmetry in five dimensions: the heterotic on T^4xS^1, the type IIA on K3xS^1, the type IIB on K3xS^1 and the type I on T^4x S^1. The non-perturbative instabilities are analysed. These strings undergo a high-temperature transition to a new phase in which five-branes condense. This phase is described in detail, using both the effective supergravity and non-critical string theory in six dimensions. In the new phase, supersymmetry is perturbatively restored but broken at the non-perturbative level. In the infinite-temperature limit the theory is topological with an N=2 supersymmetry based on a topologically non-trivial hyper-Kahler manifold.
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publishDate 1999
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spelling cern-3783882023-03-14T20:34:45Zdoi:10.1016/S0550-3213(99)00171-6http://cds.cern.ch/record/378388engAntoniadis, IgnatiosDerendinger, J.PierreKounnas, CostasNon-perturbative Temperature Instabilities in N=4 StringsParticle Physics - TheoryWe derive a universal thermal effective potential, which describes all possible high-temperature instabilities of the known N=4 superstrings, using the properties of gauged N=4 supergravity. These instabilities are due to three non-perturbative thermal dyonic modes, which become tachyonic in a region of the thermal moduli space. The latter is described by three moduli, s,t,u, which are common to all non-perturbative dual-equivalent strings with N=4 supersymmetry in five dimensions: the heterotic on T^4xS^1, the type IIA on K3xS^1, the type IIB on K3xS^1 and the type I on T^4x S^1. The non-perturbative instabilities are analysed. These strings undergo a high-temperature transition to a new phase in which five-branes condense. This phase is described in detail, using both the effective supergravity and non-critical string theory in six dimensions. In the new phase, supersymmetry is perturbatively restored but broken at the non-perturbative level. In the infinite-temperature limit the theory is topological with an N=2 supersymmetry based on a topologically non-trivial hyper-Kahler manifold.We derive a universal thermal effective potential, which describes all possible high-temperature instabilities of the known N = 4 superstrings, using the properties of gauged N = 4 supergravity. These instabilities are due to three non-perturbative thermal dyonic modes, which become tachyonic in a region of the thermal moduli space. The latter is described by three moduli, s , t , u , which are common to all non-perturbative dual-equivalent strings with N = 4 supersymmetry in five dimensions: the heterotic on T 4 × S 1 , the type IIB on K 3 × S 1 , and the type I on T 4 × S 1 . The non-perturbative instabilities are analyzed. These strings undergo a high-temperature transition to a new phase in which five-branes condense. This phase is described in detail, using both the effective supergravity and non-critical string theory in six dimensions. In the new phase, supersymmetry is perturbatively restored but broken at the non-perturbative level. In the infinite-temperature limit the theory is topological with an N = 2 supersymmetry based on a topologically non-trivial hyper-Kähler manifold.We derive a universal thermal effective potential, which describes all possible high-temperature instabilities of the known N=4 superstrings, using the properties of gauged N=4 supergravity. These instabilities are due to three non-perturbative thermal dyonic modes, which become tachyonic in a region of the thermal moduli space. The latter is described by three moduli, s,t,u, which are common to all non-perturbative dual-equivalent strings with N=4 supersymmetry in five dimensions: the heterotic on T^4xS^1, the type IIA on K3xS^1, the type IIB on K3xS^1 and the type I on T^4x S^1. The non-perturbative instabilities are analysed. These strings undergo a high-temperature transition to a new phase in which five-branes condense. This phase is described in detail, using both the effective supergravity and non-critical string theory in six dimensions. In the new phase, supersymmetry is perturbatively restored but broken at the non-perturbative level. In the infinite-temperature limit the theory is topological with an N=2 supersymmetry based on a topologically non-trivial hyper-Kahler manifold.hep-th/9902032CERN-TH-99-20LPTENS-98-48CPTH-S706-1298NEIP-98-021CERN--TH-99-20CPTH-S706.1298NEIP--98--021CERN-TH-99-020CPTH-S-706LPT-ENS-98-48NEIP-98-021oai:cds.cern.ch:3783881999-02-04
spellingShingle Particle Physics - Theory
Antoniadis, Ignatios
Derendinger, J.Pierre
Kounnas, Costas
Non-perturbative Temperature Instabilities in N=4 Strings
title Non-perturbative Temperature Instabilities in N=4 Strings
title_full Non-perturbative Temperature Instabilities in N=4 Strings
title_fullStr Non-perturbative Temperature Instabilities in N=4 Strings
title_full_unstemmed Non-perturbative Temperature Instabilities in N=4 Strings
title_short Non-perturbative Temperature Instabilities in N=4 Strings
title_sort non-perturbative temperature instabilities in n=4 strings
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/S0550-3213(99)00171-6
http://cds.cern.ch/record/378388
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