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A new and trivial CP symmetry for extended $A_4$ flavor

The combination of $ν_μ$-$ν_τ$ exchange together with CP conjugation in the neutrino sector (known as $\mathrm{CP}^{μτ}$ symmetry or $μτ$-reflection) is known to predict the viable pattern: $θ_{23}=45^\circ$, maximal Dirac CP phase and trivial Majorana phases. We implement such a CP symmetry as a new CP symmetry in theories with $A_4$ flavor. The implementation in a complete renormalizable model leads to a new form for the neutrino mass matrix that leads to further predictions: normal hierarchical spectrum with lightest mass and $m_{ββ}$ ($0νββ$) of only few meV, and either $ν_1$ or $ν_2$ has opposite CP parity. An approximate $L_μ-L_τ$ symmetry arises naturally and controls the flavor structure of the model. The light neutrino masses are generated by the extended seesaw mechanism with 6 right-handed neutrinos (RHNs). The requirement of negligible one-loop corrections to light neutrino masses, validity of the extended seesaw approximation and not too long-lived BSM states to comply with BBN essentially restricts the parameters of the model to a small region: three relatively light right-handed neutrinos at the GeV scale, heavier neutrinos at the electroweak scale and Yukawa couplings smaller than the electron Yukawa. Such a small Yukawa couplings render these RHNs unobservable in terrestrial experiments.

preprint2016arXivOpen access

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