General Property of Neutrino Mass Matrix and CP Violation
Abstract
It is found that the atmospheric neutrino mixing angle of θatm is determined to be θatm=Im(B)/Im(C) for B=M_eμ and C=M_eτ, where Mij is the ij element of M M with M as a complex symmetric neutrino mass matrix in the (e, μ, τ)-basis. Another mixing angle, θ13, defined as Ue3 = θ13e-iδ is subject to the condition: 2θ13 |θatmB+θatmC| and the CP-violating Dirac phase of δ is identical to the phase of θatmB+θatmC. The smallest value of | θ13| is achieved at θatm=-Re(C)/Re(B) that yields the maximal CP-violation and that implies C=- B for the maximal atmospheric neutrino mixing of θatm== 1. The generic smallness of | θ13| can be ascribed to the tiny violation of the electron number conservation.
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