A left-right mirror symmetric model: common origin of neutrino mass, baryon asymmetry and dark matter

Abstract I suggest a left-right mirror symmetric particle model as the natural and aes- thetic extension of the SM. As the left-right mirror symmetry breaking, the tiny neutrino mass is generated by the radiative mechanism, the baryon asymmetry through the lepto- genesis arises from the characterist...

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Main Author: Wei-Min Yang
Format: Article
Language:English
Published: SpringerOpen 2020-01-01
Series:Journal of High Energy Physics
Subjects:
Online Access:https://doi.org/10.1007/JHEP01(2020)148
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author Wei-Min Yang
author_facet Wei-Min Yang
author_sort Wei-Min Yang
collection DOAJ
description Abstract I suggest a left-right mirror symmetric particle model as the natural and aes- thetic extension of the SM. As the left-right mirror symmetry breaking, the tiny neutrino mass is generated by the radiative mechanism, the baryon asymmetry through the lepto- genesis arises from the characteristic decay of the TeV-scale mirror charged lepton, and a KeV-mass sterile Dirac fermion eventually becomes the CDM. The model can completely account for the common origin of the neutrino mass, the baryon asymmetry and the dark matter, moreover, profoundly uncover the internal connections among them. Finally, I discuss several feasible approaches to test the model predictions and probe the new physics by near future experiments.
format Article
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institution Kabale University
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spelling doaj-art-6a57dc76fb514617b3ebd089c98ba8ed2025-01-26T12:10:59ZengSpringerOpenJournal of High Energy Physics1029-84792020-01-012020112210.1007/JHEP01(2020)148A left-right mirror symmetric model: common origin of neutrino mass, baryon asymmetry and dark matterWei-Min Yang0Department of Modern Physics, University of Science and Technology of ChinaAbstract I suggest a left-right mirror symmetric particle model as the natural and aes- thetic extension of the SM. As the left-right mirror symmetry breaking, the tiny neutrino mass is generated by the radiative mechanism, the baryon asymmetry through the lepto- genesis arises from the characteristic decay of the TeV-scale mirror charged lepton, and a KeV-mass sterile Dirac fermion eventually becomes the CDM. The model can completely account for the common origin of the neutrino mass, the baryon asymmetry and the dark matter, moreover, profoundly uncover the internal connections among them. Finally, I discuss several feasible approaches to test the model predictions and probe the new physics by near future experiments.https://doi.org/10.1007/JHEP01(2020)148Beyond Standard ModelCosmology of Theories beyond the SMNeutrino Physics
spellingShingle Wei-Min Yang
A left-right mirror symmetric model: common origin of neutrino mass, baryon asymmetry and dark matter
Journal of High Energy Physics
Beyond Standard Model
Cosmology of Theories beyond the SM
Neutrino Physics
title A left-right mirror symmetric model: common origin of neutrino mass, baryon asymmetry and dark matter
title_full A left-right mirror symmetric model: common origin of neutrino mass, baryon asymmetry and dark matter
title_fullStr A left-right mirror symmetric model: common origin of neutrino mass, baryon asymmetry and dark matter
title_full_unstemmed A left-right mirror symmetric model: common origin of neutrino mass, baryon asymmetry and dark matter
title_short A left-right mirror symmetric model: common origin of neutrino mass, baryon asymmetry and dark matter
title_sort left right mirror symmetric model common origin of neutrino mass baryon asymmetry and dark matter
topic Beyond Standard Model
Cosmology of Theories beyond the SM
Neutrino Physics
url https://doi.org/10.1007/JHEP01(2020)148
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