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Light Composite Higgs: LCH@LHC

Here I summarize some of the salient features of technicolor theories with technifermions in higher dimensional representations of the technicolor gauge group. The expected phase diagram as function of number of flavors and colors for the two index (anti)symmetric representation of the gauge group i...

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Autor principal: Sannino, F
Lenguaje:eng
Publicado: 2005
Materias:
Acceso en línea:https://dx.doi.org/10.1142/S0217751X05029162
http://cds.cern.ch/record/845458
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author Sannino, F
author_facet Sannino, F
author_sort Sannino, F
collection CERN
description Here I summarize some of the salient features of technicolor theories with technifermions in higher dimensional representations of the technicolor gauge group. The expected phase diagram as function of number of flavors and colors for the two index (anti)symmetric representation of the gauge group is reviewed. After having constructed the simplest walking technicolor theory one can show that it is not at odds with the precision measurements. The simplest theory also requires, for consistency, a fourth family of heavy leptons. The latter may result in an interesting signature at LHC. In the case of a fourth family of leptons with ordinary lepton hypercharge the new heavy neutrino can be a natural candidate of cold dark matter. New theories will also be proposed in which the critical number of flavors needed to enter the conformal window is higher than in the one with fermions in the two-index symmetric representation, but lower than in the walking technicolor theories with fermions only in the fundamental representation of the gauge group. Due to the near conformal/chiral phase transition the composite Higgs is very light compared to the intrinsic scale of the technicolor theory. For the two technicolor theory the composite Higgs mass is predicted not to exceed 150 GeV
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spelling cern-8454582019-09-30T06:29:59Zdoi:10.1142/S0217751X05029162http://cds.cern.ch/record/845458engSannino, FLight Composite Higgs: LCH@LHCParticle Physics - PhenomenologyHere I summarize some of the salient features of technicolor theories with technifermions in higher dimensional representations of the technicolor gauge group. The expected phase diagram as function of number of flavors and colors for the two index (anti)symmetric representation of the gauge group is reviewed. After having constructed the simplest walking technicolor theory one can show that it is not at odds with the precision measurements. The simplest theory also requires, for consistency, a fourth family of heavy leptons. The latter may result in an interesting signature at LHC. In the case of a fourth family of leptons with ordinary lepton hypercharge the new heavy neutrino can be a natural candidate of cold dark matter. New theories will also be proposed in which the critical number of flavors needed to enter the conformal window is higher than in the one with fermions in the two-index symmetric representation, but lower than in the walking technicolor theories with fermions only in the fundamental representation of the gauge group. Due to the near conformal/chiral phase transition the composite Higgs is very light compared to the intrinsic scale of the technicolor theory. For the two technicolor theory the composite Higgs mass is predicted not to exceed 150 GeVhep-ph/0506205oai:cds.cern.ch:8454582005-06-21
spellingShingle Particle Physics - Phenomenology
Sannino, F
Light Composite Higgs: LCH@LHC
title Light Composite Higgs: LCH@LHC
title_full Light Composite Higgs: LCH@LHC
title_fullStr Light Composite Higgs: LCH@LHC
title_full_unstemmed Light Composite Higgs: LCH@LHC
title_short Light Composite Higgs: LCH@LHC
title_sort light composite higgs: lch@lhc
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1142/S0217751X05029162
http://cds.cern.ch/record/845458
work_keys_str_mv AT sanninof lightcompositehiggslchlhc