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Symmetry based parameterizations of the lepton mixing matrix

Published 3 May 2013 in hep-ph | (1305.0692v2)

Abstract: There are many mixing schemes based upon flavor symmetries that predict a vanishing θ13\theta_{13}. These mixing schemes need corrections or modifications to account for recent experimental measurements of non-zero θ13\theta_{13}. We propose new parameterizations for the lepton mixing matrix to quantify the minimal modifications needed in these mixing schemes. The parameterizations can be factorized in two parts: U0(a,b)U_{0}(a,b) and R(θ,ϕ)R(\theta,\phi). The first factor can be viewed as a zeroth order mixing matrix coming from some flavor symmetry. It reproduces the popular mixing schemes based upon flavor symmetries for suitable values of aa and bb. The second factor can be interpreted as a minimal modification to the mixing matrix and is responsible for non zero θ13\theta_{13}, non-maximal θ23\theta_{23} and CP violation. We also find the experimentally allowed parameter space for the parameters aa and bb and compare it with the symmetry based values for these parameters.

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