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A smooth massless limit for supersymmetric QCD

We analyse in detail the behaviour of supersymmetric QCD with a number of flavours M smaller than the number of colours N, for quark masses smaller than the dynamically generated scale. In this regime, we find it useful to move from meson superfields to Nambu-Goldstone-like variables. In particular...

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Autor principal: Feruglio, Ferruccio
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0370-2693(99)00158-6
http://cds.cern.ch/record/347094
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author Feruglio, Ferruccio
author_facet Feruglio, Ferruccio
author_sort Feruglio, Ferruccio
collection CERN
description We analyse in detail the behaviour of supersymmetric QCD with a number of flavours M smaller than the number of colours N, for quark masses smaller than the dynamically generated scale. In this regime, we find it useful to move from meson superfields to Nambu-Goldstone-like variables. In particular we work out the mass spectrum and the set of decay constants that specify the interactions of the low-energy theory. We explicitly check that masses and decay constants have a consistent behaviour under decoupling and that they satisfy current algebra requirements. Finally we speculate about the massless limit. For vanishing quark masses, and only in this case, the relation between mesons and Nambu-Goldstone variables becomes singular. When analysed in terms of the Nambu-Goldstone superfields, the massless limit exhibits a spontaneous breaking of the flavour symmetry down to the diagonal vector-like subgroup, with massless Goldstone modes embedded in an M^2-dimensional complex moduli space. The symmetry-breaking order parameter is formally infinite, but this has the only effect of turning off the interactions between the chiral superfields.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
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spelling cern-3470942023-03-14T17:01:42Zdoi:10.1016/S0370-2693(99)00158-6http://cds.cern.ch/record/347094engFeruglio, FerruccioA smooth massless limit for supersymmetric QCDParticle Physics - TheoryWe analyse in detail the behaviour of supersymmetric QCD with a number of flavours M smaller than the number of colours N, for quark masses smaller than the dynamically generated scale. In this regime, we find it useful to move from meson superfields to Nambu-Goldstone-like variables. In particular we work out the mass spectrum and the set of decay constants that specify the interactions of the low-energy theory. We explicitly check that masses and decay constants have a consistent behaviour under decoupling and that they satisfy current algebra requirements. Finally we speculate about the massless limit. For vanishing quark masses, and only in this case, the relation between mesons and Nambu-Goldstone variables becomes singular. When analysed in terms of the Nambu-Goldstone superfields, the massless limit exhibits a spontaneous breaking of the flavour symmetry down to the diagonal vector-like subgroup, with massless Goldstone modes embedded in an M^2-dimensional complex moduli space. The symmetry-breaking order parameter is formally infinite, but this has the only effect of turning off the interactions between the chiral superfields.We analyse in detail the behaviour of supersymmetric QCD with a number of flavours M smaller than the number of colours N, for quark masses smaller than the dynamically generated scale. In this regime, we find it useful to move from meson superfields to Nambu-Goldstone-like variables. In particular we work out the mass spectrum and the set of decay constants that specify the interactions of the low-energy theory. We explicitly check that masses and decay constants have a consistent behaviour under decoupling and that they satisfy current algebra requirements. Finally we speculate about the massless limit. For vanishing quark masses, and only in this case, the relation between mesons and Nambu-Goldstone variables becomes singular. When analysed in terms of the Nambu-Goldstone superfields, the massless limit exhibits a spontaneous breaking of the flavour symmetry, with massless Goldstone modes embedded in an M^2-dimensional complex moduli space. The symmetry-breaking order parameter is formally infinite, but this has the only effect of turning off the interactions between the chiral superfields.hep-th/9802178CERN-TH-98-45DFPD-98-TH-08CERN-TH-98-045DFPD-98-TH-08oai:cds.cern.ch:3470941998-02-26
spellingShingle Particle Physics - Theory
Feruglio, Ferruccio
A smooth massless limit for supersymmetric QCD
title A smooth massless limit for supersymmetric QCD
title_full A smooth massless limit for supersymmetric QCD
title_fullStr A smooth massless limit for supersymmetric QCD
title_full_unstemmed A smooth massless limit for supersymmetric QCD
title_short A smooth massless limit for supersymmetric QCD
title_sort smooth massless limit for supersymmetric qcd
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/S0370-2693(99)00158-6
http://cds.cern.ch/record/347094
work_keys_str_mv AT feruglioferruccio asmoothmasslesslimitforsupersymmetricqcd
AT feruglioferruccio smoothmasslesslimitforsupersymmetricqcd