Testing the gauged U(1)B–L model for loop induced neutrino mass with dark matter*

We present a new viable benchmark scenario under the current experimental data for the model which can explain tiny mass of active neutrinos and dark matter, as a summary of Ref. [1]. Majorana masses of right-handed neutrinos are given by the spontaneous breaking of the U(1)B−L gauge symmetry above...

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Main Authors: Ying Guohao, Kanemura Shinya, Mura Yushi
Format: Article
Language:English
Published: EDP Sciences 2024-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2024/25/epjconf_lcws2024_01017.pdf
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author Ying Guohao
Kanemura Shinya
Mura Yushi
author_facet Ying Guohao
Kanemura Shinya
Mura Yushi
author_sort Ying Guohao
collection DOAJ
description We present a new viable benchmark scenario under the current experimental data for the model which can explain tiny mass of active neutrinos and dark matter, as a summary of Ref. [1]. Majorana masses of right-handed neutrinos are given by the spontaneous breaking of the U(1)B−L gauge symmetry above the electroweak scale, and tiny neutrino masses are radiatively induced by quantum effects of particles of the dark sector including dark matter candidates. We first show benchmark points which satisfy current experimental data, and then give comments on how this model can be tested at collider experiments.
format Article
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institution Kabale University
issn 2100-014X
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publishDate 2024-01-01
publisher EDP Sciences
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spelling doaj-art-0dcb479c52914b49987e45486a9db11c2025-01-06T11:33:47ZengEDP SciencesEPJ Web of Conferences2100-014X2024-01-013150101710.1051/epjconf/202431501017epjconf_lcws2024_01017Testing the gauged U(1)B–L model for loop induced neutrino mass with dark matter*Ying Guohao0Kanemura Shinya1Mura Yushi2Department of Physics, Osaka UniversityDepartment of Physics, Osaka UniversityDepartment of Physics, Osaka UniversityWe present a new viable benchmark scenario under the current experimental data for the model which can explain tiny mass of active neutrinos and dark matter, as a summary of Ref. [1]. Majorana masses of right-handed neutrinos are given by the spontaneous breaking of the U(1)B−L gauge symmetry above the electroweak scale, and tiny neutrino masses are radiatively induced by quantum effects of particles of the dark sector including dark matter candidates. We first show benchmark points which satisfy current experimental data, and then give comments on how this model can be tested at collider experiments.https://www.epj-conferences.org/articles/epjconf/pdf/2024/25/epjconf_lcws2024_01017.pdf
spellingShingle Ying Guohao
Kanemura Shinya
Mura Yushi
Testing the gauged U(1)B–L model for loop induced neutrino mass with dark matter*
EPJ Web of Conferences
title Testing the gauged U(1)B–L model for loop induced neutrino mass with dark matter*
title_full Testing the gauged U(1)B–L model for loop induced neutrino mass with dark matter*
title_fullStr Testing the gauged U(1)B–L model for loop induced neutrino mass with dark matter*
title_full_unstemmed Testing the gauged U(1)B–L model for loop induced neutrino mass with dark matter*
title_short Testing the gauged U(1)B–L model for loop induced neutrino mass with dark matter*
title_sort testing the gauged u 1 b l model for loop induced neutrino mass with dark matter
url https://www.epj-conferences.org/articles/epjconf/pdf/2024/25/epjconf_lcws2024_01017.pdf
work_keys_str_mv AT yingguohao testingthegaugedu1blmodelforloopinducedneutrinomasswithdarkmatter
AT kanemurashinya testingthegaugedu1blmodelforloopinducedneutrinomasswithdarkmatter
AT murayushi testingthegaugedu1blmodelforloopinducedneutrinomasswithdarkmatter