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A Realistic $U(2)$ Model of Flavor

We propose a simple U(2) model of flavor compatible with an SU(5) GUT structure. All hierarchies in fermion masses and mixings arise from powers of two small parameters that control the U(2) breaking. In contrast to previous U(2) models this setup can be realized without supersymmetry and provides a...

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Detalles Bibliográficos
Autores principales: Linster, Matthias, Ziegler, Robert
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP08(2018)058
http://cds.cern.ch/record/2319086
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author Linster, Matthias
Ziegler, Robert
author_facet Linster, Matthias
Ziegler, Robert
author_sort Linster, Matthias
collection CERN
description We propose a simple U(2) model of flavor compatible with an SU(5) GUT structure. All hierarchies in fermion masses and mixings arise from powers of two small parameters that control the U(2) breaking. In contrast to previous U(2) models this setup can be realized without supersymmetry and provides an excellent fit to all SM flavor observables including neutrinos. We also consider a variant of this model based on a D$_{6}$ × U(1)$_{F}$ flavor symmetry, which closely resembles the U(2) structure, but allows for Majorana neutrino masses from the Weinberg operator. Remarkably, in this case one naturally obtains large mixing angles in the lepton sector from small mixing angles in the quark sector. The model also offers a natural option for addressing the Strong CP Problem and Dark Matter by identifying the Goldstone boson of the U(1)$_{F}$ factor as the QCD axion.
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spelling cern-23190862021-11-12T20:16:45Zdoi:10.1007/JHEP08(2018)058http://cds.cern.ch/record/2319086engLinster, MatthiasZiegler, RobertA Realistic $U(2)$ Model of Flavorhep-phParticle Physics - PhenomenologyWe propose a simple U(2) model of flavor compatible with an SU(5) GUT structure. All hierarchies in fermion masses and mixings arise from powers of two small parameters that control the U(2) breaking. In contrast to previous U(2) models this setup can be realized without supersymmetry and provides an excellent fit to all SM flavor observables including neutrinos. We also consider a variant of this model based on a D$_{6}$ × U(1)$_{F}$ flavor symmetry, which closely resembles the U(2) structure, but allows for Majorana neutrino masses from the Weinberg operator. Remarkably, in this case one naturally obtains large mixing angles in the lepton sector from small mixing angles in the quark sector. The model also offers a natural option for addressing the Strong CP Problem and Dark Matter by identifying the Goldstone boson of the U(1)$_{F}$ factor as the QCD axion.We propose a simple $U(2)$ model of flavor compatible with an $SU(5)$ GUT structure. All hierarchies in fermion masses and mixings arise from powers of two small parameters that control the $U(2)$ breaking. In contrast to previous $U(2)$ models this setup can be realized without supersymmetry and provides an excellent fit to all SM flavor observables including neutrinos. We also consider a variant of this model based on a $D_6 \times U(1)_F$ flavor symmetry, which closely resembles the $U(2)$ structure, but allows for Majorana neutrino masses from the Weinberg operator. Remarkably, in this case one naturally obtains large mixing in the lepton sector from small mixing in the quark sector. The model also offers a natural option for addressing the Strong CP Problem and Dark Matter by identifying the Goldstone boson of the $U(1)_F$ factor as the QCD axion.arXiv:1805.07341CERN-TH-2018-121TTP18-019oai:cds.cern.ch:23190862018-05-18
spellingShingle hep-ph
Particle Physics - Phenomenology
Linster, Matthias
Ziegler, Robert
A Realistic $U(2)$ Model of Flavor
title A Realistic $U(2)$ Model of Flavor
title_full A Realistic $U(2)$ Model of Flavor
title_fullStr A Realistic $U(2)$ Model of Flavor
title_full_unstemmed A Realistic $U(2)$ Model of Flavor
title_short A Realistic $U(2)$ Model of Flavor
title_sort realistic $u(2)$ model of flavor
topic hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP08(2018)058
http://cds.cern.ch/record/2319086
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