Affiliation:
1. University of Granada
2. National Institute for Nuclear Physics
3. University of Padua
Abstract
We analyze a modular invariant model of lepton masses, with neutrino
masses originating either from the Weinberg operator or from the seesaw.
The constraint provided by modular invariance is so strong that neutrino
mass ratios, lepton mixing angles and Dirac/Majorana phases do not
depend on any Lagrangian parameter. They only depend on the vacuum of
the theory, parametrized in terms of a complex modulus and a real field.
Thus eight measurable quantities are described by the three vacuum
parameters, whose optimization provides an excellent fit to data for the
Weinberg operator and a good fit for the seesaw case. Neutrino masses
from the Weinberg operator (seesaw) have inverted (normal) ordering.
Several sources of potential corrections, such as higher dimensional
operators, renormalization group evolution and supersymmetry breaking
effects, are carefully discussed and shown not to affect the predictions
under reasonable conditions.
Funder
Consejería de Economía, Innovación, Ciencia y Empleo, Junta de Andalucía
Horizon 2020
Ministerio de Economía y Competitividad
Ministerio de Educación y Cultura - Spain
Ministero dell’Istruzione, dell’Università e della Ricerca
Cited by
157 articles.
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