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Dynamical Stabilization of the Fermi Scale: Towards a Composite Universe

This lecture-based, concise primer introduces and summarize basic features associated with dynamical breaking of the electroweak symmetry in elementary particle physics. In particular, the phase diagram of strongly-coupled theories as function of the number of colors, flavors and matter representati...

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Autor principal: Sannino, Francesco
Lenguaje:eng
Publicado: Springer 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-642-33341-5
http://cds.cern.ch/record/1493287
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author Sannino, Francesco
author_facet Sannino, Francesco
author_sort Sannino, Francesco
collection CERN
description This lecture-based, concise primer introduces and summarize basic features associated with dynamical breaking of the electroweak symmetry in elementary particle physics. In particular, the phase diagram of strongly-coupled theories as function of the number of colors, flavors and matter representation, playing a fundamental role when trying to construct viable extensions of the standard model, are examined for SU(N) gauge theories with fermionic matter transforming according to arbitrary representations of the underlying gauge group. We will further discuss how the phase diagram can be used to construct unparticle models and then review Minimal Walking Technicolor (MWT) and other extensions, such as partially gauged and split technicolor. Eventually, the unification of the standard model gauge couplings will be revisited within technicolor extensions of the standard model. A number of appendices will help student and newcomers to the field reviewing some basic methods and provide them with useful details.
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spelling cern-14932872021-04-22T00:07:47Zdoi:10.1007/978-3-642-33341-5http://cds.cern.ch/record/1493287engSannino, FrancescoDynamical Stabilization of the Fermi Scale: Towards a Composite UniverseParticle Physics – TheoryThis lecture-based, concise primer introduces and summarize basic features associated with dynamical breaking of the electroweak symmetry in elementary particle physics. In particular, the phase diagram of strongly-coupled theories as function of the number of colors, flavors and matter representation, playing a fundamental role when trying to construct viable extensions of the standard model, are examined for SU(N) gauge theories with fermionic matter transforming according to arbitrary representations of the underlying gauge group. We will further discuss how the phase diagram can be used to construct unparticle models and then review Minimal Walking Technicolor (MWT) and other extensions, such as partially gauged and split technicolor. Eventually, the unification of the standard model gauge couplings will be revisited within technicolor extensions of the standard model. A number of appendices will help student and newcomers to the field reviewing some basic methods and provide them with useful details.Springeroai:cds.cern.ch:14932872013
spellingShingle Particle Physics – Theory
Sannino, Francesco
Dynamical Stabilization of the Fermi Scale: Towards a Composite Universe
title Dynamical Stabilization of the Fermi Scale: Towards a Composite Universe
title_full Dynamical Stabilization of the Fermi Scale: Towards a Composite Universe
title_fullStr Dynamical Stabilization of the Fermi Scale: Towards a Composite Universe
title_full_unstemmed Dynamical Stabilization of the Fermi Scale: Towards a Composite Universe
title_short Dynamical Stabilization of the Fermi Scale: Towards a Composite Universe
title_sort dynamical stabilization of the fermi scale: towards a composite universe
topic Particle Physics – Theory
url https://dx.doi.org/10.1007/978-3-642-33341-5
http://cds.cern.ch/record/1493287
work_keys_str_mv AT sanninofrancesco dynamicalstabilizationofthefermiscaletowardsacompositeuniverse