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Supersymmetry breaking in M-theory and quantization rules

We analyze in detail supersymmetry breaking by compactification of the fifth dimension in M-theory in the compactification pattern $11d \to 5d \to 4d$ and find that a superpotential is generated for the complex fields coming from $5d$ hypermultiplets, namely the dilaton $S$ and the complex structure...

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Detalles Bibliográficos
Autor principal: Dudas, Emilian
Lenguaje:eng
Publicado: 1997
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0370-2693(97)01308-7
http://cds.cern.ch/record/333245
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author Dudas, Emilian
author_facet Dudas, Emilian
author_sort Dudas, Emilian
collection CERN
description We analyze in detail supersymmetry breaking by compactification of the fifth dimension in M-theory in the compactification pattern $11d \to 5d \to 4d$ and find that a superpotential is generated for the complex fields coming from $5d$ hypermultiplets, namely the dilaton $S$ and the complex structure moduli. Using general arguments it is shown that these fields are always stabilized such that they don't contribute to supersymmetry breaking, which is completely saturated by the Kähler moduli coming from vector multiplets. It is shown that this mechanism is the strong-coupling analog of the Rohm-Witten quantization of the antisymmetric tensor field strength of string theories. The effect of a gaugino condensate on one of the boundaries is also considered.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1997
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spelling cern-3332452023-03-14T18:55:33Zdoi:10.1016/S0370-2693(97)01308-7http://cds.cern.ch/record/333245engDudas, EmilianSupersymmetry breaking in M-theory and quantization rulesParticle Physics - TheoryWe analyze in detail supersymmetry breaking by compactification of the fifth dimension in M-theory in the compactification pattern $11d \to 5d \to 4d$ and find that a superpotential is generated for the complex fields coming from $5d$ hypermultiplets, namely the dilaton $S$ and the complex structure moduli. Using general arguments it is shown that these fields are always stabilized such that they don't contribute to supersymmetry breaking, which is completely saturated by the Kähler moduli coming from vector multiplets. It is shown that this mechanism is the strong-coupling analog of the Rohm-Witten quantization of the antisymmetric tensor field strength of string theories. The effect of a gaugino condensate on one of the boundaries is also considered.We analyze in detail supersymmetry breaking by compactification of the fifth dimension in M-theory in the compactification pattern $11d \to 5d \to 4d$ and find that a superpotential is generated for the complex fields coming from $5d$ hypermultiplets, namely the dilaton $S$ and the complex structure moduli. Using general arguments it is shown that these fields are always stabilized such that they don't contribute to supersymmetry breaking, which is completely saturated by the K\"ahler moduli coming from vector multiplets. It is shown that this mechanism is the strong-coupling analog of the Rohm-Witten quantization of the antisymmetric tensor field strength of string theories. The effect of a gaugino condensate on one of the boundaries is also considered.We analyze in detail supersymmetry breaking by compactification of the fifth dimension in M-theory in the compactification pattern 11 d →5 d →4 d and find that a superpotential is generated for the complex fields coming from 5 d hypermultiplets, namely the dilaton S and the complex structure moduli. Using general arguments it is shown that these fields are always stabilized such that they don't contribute to supersymmetry breaking, which is completely saturated by the Kähler moduli coming from vector multiplets. It is shown that this mechanism is the strong-coupling analog of the Rohm-Witten quantization of the antisymmetric tensor field strength of string theories. The effect of a gaugino condensate on one of the boundaries is also considered.hep-th/9709043CERN-TH-97-236LPTHE-ORSAY-97-43CERN-TH-97-236LPTHE-97-43oai:cds.cern.ch:3332451997-09-05
spellingShingle Particle Physics - Theory
Dudas, Emilian
Supersymmetry breaking in M-theory and quantization rules
title Supersymmetry breaking in M-theory and quantization rules
title_full Supersymmetry breaking in M-theory and quantization rules
title_fullStr Supersymmetry breaking in M-theory and quantization rules
title_full_unstemmed Supersymmetry breaking in M-theory and quantization rules
title_short Supersymmetry breaking in M-theory and quantization rules
title_sort supersymmetry breaking in m-theory and quantization rules
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/S0370-2693(97)01308-7
http://cds.cern.ch/record/333245
work_keys_str_mv AT dudasemilian supersymmetrybreakinginmtheoryandquantizationrules