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Type-I Seesaw with eV-Scale Neutrinos

We consider seesaw type-I models including at least one (mostly-)sterile neutrino with mass at the eV scale. Three distinct situations are found, where the presence of light extra neutrinos is naturally justified by an approximately conserved lepton number symmetry. To analyse these scenarios consis...

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Detalles Bibliográficos
Autores principales: Branco, G.C., Penedo, J.T., Pereira, Pedro M.F., Rebelo, M.N., Silva-Marcos, J.I.
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP07(2020)164
http://cds.cern.ch/record/2815721
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author Branco, G.C.
Penedo, J.T.
Pereira, Pedro M.F.
Rebelo, M.N.
Silva-Marcos, J.I.
author_facet Branco, G.C.
Penedo, J.T.
Pereira, Pedro M.F.
Rebelo, M.N.
Silva-Marcos, J.I.
author_sort Branco, G.C.
collection CERN
description We consider seesaw type-I models including at least one (mostly-)sterile neutrino with mass at the eV scale. Three distinct situations are found, where the presence of light extra neutrinos is naturally justified by an approximately conserved lepton number symmetry. To analyse these scenarios consistently, it is crucial to employ an exact parametrisation of the full mixing matrix. We provide additional exact results, including generalised versions of the seesaw relation and of the Casas-Ibarra parametrisation, valid for every scale of seesaw. We find that the existence of a light sterile neutrino imposes an upper bound on the lightest neutrino mass. We further assess the impact of light sterile states on short- and long-baseline neutrino oscillation experiments, emphasise future detection prospects, and address CP Violation in this framework via the analysis of CP asymmetries and construction of weak basis invariants. The proposed models can accommodate enough active-sterile mixing to play a role in the explanation of short-baseline anomalies.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
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spelling cern-28157212022-07-22T13:34:25Zdoi:10.1007/JHEP07(2020)164http://cds.cern.ch/record/2815721engBranco, G.C.Penedo, J.T.Pereira, Pedro M.F.Rebelo, M.N.Silva-Marcos, J.I.Type-I Seesaw with eV-Scale Neutrinoshep-phParticle Physics - PhenomenologyWe consider seesaw type-I models including at least one (mostly-)sterile neutrino with mass at the eV scale. Three distinct situations are found, where the presence of light extra neutrinos is naturally justified by an approximately conserved lepton number symmetry. To analyse these scenarios consistently, it is crucial to employ an exact parametrisation of the full mixing matrix. We provide additional exact results, including generalised versions of the seesaw relation and of the Casas-Ibarra parametrisation, valid for every scale of seesaw. We find that the existence of a light sterile neutrino imposes an upper bound on the lightest neutrino mass. We further assess the impact of light sterile states on short- and long-baseline neutrino oscillation experiments, emphasise future detection prospects, and address CP Violation in this framework via the analysis of CP asymmetries and construction of weak basis invariants. The proposed models can accommodate enough active-sterile mixing to play a role in the explanation of short-baseline anomalies.arXiv:1912.05875oai:cds.cern.ch:28157212020-01-13
spellingShingle hep-ph
Particle Physics - Phenomenology
Branco, G.C.
Penedo, J.T.
Pereira, Pedro M.F.
Rebelo, M.N.
Silva-Marcos, J.I.
Type-I Seesaw with eV-Scale Neutrinos
title Type-I Seesaw with eV-Scale Neutrinos
title_full Type-I Seesaw with eV-Scale Neutrinos
title_fullStr Type-I Seesaw with eV-Scale Neutrinos
title_full_unstemmed Type-I Seesaw with eV-Scale Neutrinos
title_short Type-I Seesaw with eV-Scale Neutrinos
title_sort type-i seesaw with ev-scale neutrinos
topic hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP07(2020)164
http://cds.cern.ch/record/2815721
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AT penedojt typeiseesawwithevscaleneutrinos
AT pereirapedromf typeiseesawwithevscaleneutrinos
AT rebelomn typeiseesawwithevscaleneutrinos
AT silvamarcosji typeiseesawwithevscaleneutrinos