Muon $g-2$, dark matter, and neutrino mass explanations in a modular $A_4$ symmetry

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Main Authors: Hutauruk, Parada T. P., Kang, Dong Woo, Kim, Jongkuk, Okada, Hiroshi
Format: Preprint
Published: 2020
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author Hutauruk, Parada T. P.
Kang, Dong Woo
Kim, Jongkuk
Okada, Hiroshi
author_facet Hutauruk, Parada T. P.
Kang, Dong Woo
Kim, Jongkuk
Okada, Hiroshi
contents We study a successful model to explain the muon anomalous magnetic moment originating from Yukawa-type interactions {in a supersymmetric theory}. Thanks to a modular $A_4$ flavor symmetry, any lepton flavor violations that spoil the model are forbidden. We also investigate a predictive radiative seesaw model including a dark matter (DM) candidate. At first, we construct the minimum model to satisfy the neutrino oscillation data and obtain several predictions such as Dirac CP and Majorana phases, the neutrino masses through $χ^2$ analysis. However, the minimum model would not provide our promising DM candidate. Thus, we minimally extend the model and find a good DM candidate. In the extended framework, we show the allowed regions to satisfy the muon anomalous magnetic moment and the observed relic density of dark matter in addition to predictions of the lepton sector.
format Preprint
id arxiv_https___arxiv_org_abs_2012_11156
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Muon $g-2$, dark matter, and neutrino mass explanations in a modular $A_4$ symmetry
Hutauruk, Parada T. P.
Kang, Dong Woo
Kim, Jongkuk
Okada, Hiroshi
High Energy Physics - Phenomenology
We study a successful model to explain the muon anomalous magnetic moment originating from Yukawa-type interactions {in a supersymmetric theory}. Thanks to a modular $A_4$ flavor symmetry, any lepton flavor violations that spoil the model are forbidden. We also investigate a predictive radiative seesaw model including a dark matter (DM) candidate. At first, we construct the minimum model to satisfy the neutrino oscillation data and obtain several predictions such as Dirac CP and Majorana phases, the neutrino masses through $χ^2$ analysis. However, the minimum model would not provide our promising DM candidate. Thus, we minimally extend the model and find a good DM candidate. In the extended framework, we show the allowed regions to satisfy the muon anomalous magnetic moment and the observed relic density of dark matter in addition to predictions of the lepton sector.
title Muon $g-2$, dark matter, and neutrino mass explanations in a modular $A_4$ symmetry
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2012.11156