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Lepton Mixing Parameters from Discrete and CP Symmetries

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arxiv 1211.5560 v2 pith:GJM754YO submitted 2012-11-23 hep-ph

Lepton Mixing Parameters from Discrete and CP Symmetries

classification hep-ph
keywords mixingdiracleptonmajoranadiscretemaximalparametersphases
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We consider a scenario with three Majorana neutrinos in which a discrete, finite flavour group G_f is combined with a generalized CP transformation. We derive conditions for consistently defining such a setup. We show that in general lepton mixing angles and CP phases (Dirac as well as Majorana) only depend on one single parameter theta which can take values between 0 and pi, if the residual symmetries are G_e contained in G_f in the charged lepton and G_nu=Z_2 x CP in the neutrino sector. We perform a comprehensive study for G_f=S_4 and find five cases which are phenomenologically interesting. They naturally lead to a non-zero reactor mixing angle and all mixing parameters are strongly correlated. Some of the patterns predict maximal atmospheric mixing and maximal Dirac phase, while others predict trivial Dirac and Majorana phases.

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Cited by 3 Pith papers

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    hep-ph 2026-07 conditional novelty 6.0

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    A modular A4 flavor model with universal couplings reproduces charged lepton masses via the modulus tau and predicts correlated neutrino observables for normal mass ordering and right-handed weight k_N = -1.

  3. The Future of Lepton Flavor

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    Upcoming neutrino experiments are projected to substantially reduce the number of viable leptonic flavor models in five popular classes by measuring mass ordering, theta_23 octant, delta_CP, and absolute mass scale.