Asymmetric tri-bi-maximal mixing and residual symmetries

Abstract

Asymmetric tri-bi-maximal mixing is a recently proposed, grand unified theory (GUT) based, flavor mixing scheme. In it, the charged lepton mixing is fixed by the GUT connection to down-type quarks and a T13 flavor symmetry, while neutrino mixing is assumed to be tri-bi-maximal (TBM) with one additional free phase. Here we show that this additional free phase can be fixed by the residual flavor and CP symmetries of the effective neutrino mass matrix. We discuss how those residual symmetries can be unified with T13 and identify the smallest possible unified flavor symmetries, namely (Z13×Z13) D12 and (Z13×Z13) S4. Sharp predictions are obtained for lepton mixing angles, CP violating phases and neutrinoless double beta decay.

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