ÚTEFČVUT Ústav technické a experimentální fyziky ČVUT v PrazeInstitute of Experimental and Applied Physics, CTU in Prague

Zee-Babu model in a Nonholomorphic Modular A4 Symmetry and Modular Stabilization

NázevTitle
Zee-Babu model in a Nonholomorphic Modular A4 Symmetry and Modular StabilizationZee-Babu model in a Nonholomorphic Modular A4 Symmetry and Modular Stabilization
Druh výsledkuResult type
Článek v časopiseJournal article
AutořiAuthors
T. Kobayashi, H. Okada, Y. Orikasa
DOIDOI
10.1093/ptep/ptag039
Časopis / citaceJournal / citation
Progress of Theoretical and Experimental Physics 2026(3), 033B07 (2026) · ISSN 2050-3911
RokYear
2026
JazykLanguage
eng
ZáznamyRecords
ProjektProject
Institucionální podpora na rozvoj výzkumné org.Institucionální podpora na rozvoj výzkumné org.
CitovánoCited by
20 (INSPIRE-HEP)
2024: 22025: 112026: 7
Plný text (open access)Full text (open access)
https://academic.oup.com/ptep/article-pdf/2026/3/033B07/67136375/ptag039.pdf
Citace ke staženíDownload citation
TXT · BibTeX

AbstraktAbstract

We study a Zee-Babu neutrino model in a nonholomorphic modular A4 symmetry, and we construct a model so that there are minimum free parameters (two complex parameters for the neutrino sector). We find that only the normal hierarchy is allowed. Moreover, the allowed region to satisfy the neutrino oscillation data is localized near τ=ω. The small absolute deviation plays a crucial role in fitting two mixings of s<>223 and s<>212. In addition, we obtain several predictions on Majorana and Dirac CP phases and neutrinoless double beta decay, as shown in our chi squared numerical analysis. We also discuss modulus stabilization within the framework of nonsupersymmetric models. Finally, we compute the expansion of modular forms near τ=ω in the appendix so that one can apply them to a model and understand its analytical structure.

We study a Zee-Babu neutrino model in a nonholomorphic modular A4 symmetry, and we construct a model so that there are minimum free parameters (two complex parameters for the neutrino sector). We find that only the normal hierarchy is allowed. Moreover, the allowed region to satisfy the neutrino oscillation data is localized near τ=ω. The small absolute deviation plays a crucial role in fitting two mixings of s<>223 and s<>212. In addition, we obtain several predictions on Majorana and Dirac CP phases and neutrinoless double beta decay, as shown in our chi squared numerical analysis. We also discuss modulus stabilization within the framework of nonsupersymmetric models. Finally, we compute the expansion of modular forms near τ=ω in the appendix so that one can apply them to a model and understand its analytical structure.

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