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Strong Electroweak Symmetry Breaking

Models of spontaneous breaking of electroweak symmetry by a strong interaction do not have fine tuning/hierarchy problem. They are conceptually elegant and use the only mechanism of spontaneous breaking of a gauge symmetry that is known to occur in nature. The simplest model, minimal technicolor wit...

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Autor principal: Grinstein, Benjamin
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1330835
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author Grinstein, Benjamin
author_facet Grinstein, Benjamin
author_sort Grinstein, Benjamin
collection CERN
description Models of spontaneous breaking of electroweak symmetry by a strong interaction do not have fine tuning/hierarchy problem. They are conceptually elegant and use the only mechanism of spontaneous breaking of a gauge symmetry that is known to occur in nature. The simplest model, minimal technicolor with extended technicolor interactions, is appealing because one can calculate by scaling up from QCD. But it is ruled out on many counts: inappropriately low quark and lepton masses (or excessive FCNC), bad electroweak data fits, light scalar and vector states, etc. However, nature may not choose the minimal model and then we are stuck: except possibly through lattice simulations, we are unable to compute and test the models. In the LHC era it therefore makes sense to abandon specific models (of strong EW breaking) and concentrate on generic features that may indicate discovery. The Technicolor Straw Man is not a model but a parametrized search strategy inspired by a remarkable generic feature of walking technicolor, that technivector mesons are light, narrow and decay readily into electroweak vector mesons and photons. While walking technicolor is popular among practitioners, alternatives exist and the Straw Man may not lead to their discovery.
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spelling cern-13308352023-03-14T17:35:46Zhttp://cds.cern.ch/record/1330835engGrinstein, BenjaminStrong Electroweak Symmetry BreakingParticle Physics - PhenomenologyModels of spontaneous breaking of electroweak symmetry by a strong interaction do not have fine tuning/hierarchy problem. They are conceptually elegant and use the only mechanism of spontaneous breaking of a gauge symmetry that is known to occur in nature. The simplest model, minimal technicolor with extended technicolor interactions, is appealing because one can calculate by scaling up from QCD. But it is ruled out on many counts: inappropriately low quark and lepton masses (or excessive FCNC), bad electroweak data fits, light scalar and vector states, etc. However, nature may not choose the minimal model and then we are stuck: except possibly through lattice simulations, we are unable to compute and test the models. In the LHC era it therefore makes sense to abandon specific models (of strong EW breaking) and concentrate on generic features that may indicate discovery. The Technicolor Straw Man is not a model but a parametrized search strategy inspired by a remarkable generic feature of walking technicolor, that technivector mesons are light, narrow and decay readily into electroweak vector mesons and photons. While walking technicolor is popular among practitioners, alternatives exist and the Straw Man may not lead to their discovery.arXiv:1102.4009UCSD-PTH-10-13oai:cds.cern.ch:13308352011-02-22
spellingShingle Particle Physics - Phenomenology
Grinstein, Benjamin
Strong Electroweak Symmetry Breaking
title Strong Electroweak Symmetry Breaking
title_full Strong Electroweak Symmetry Breaking
title_fullStr Strong Electroweak Symmetry Breaking
title_full_unstemmed Strong Electroweak Symmetry Breaking
title_short Strong Electroweak Symmetry Breaking
title_sort strong electroweak symmetry breaking
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/1330835
work_keys_str_mv AT grinsteinbenjamin strongelectroweaksymmetrybreaking