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Motivated by the possibility that the amplitude for neutrinoless double beta decay may be much smaller than the planned sensitivity of future experiments, we study ansatze for the neutrino mass matrix with $M_{ee} = 0$. For the case in which CP is conserved, we consider two classes of real-valued mass matrices: Class I defined by $|M_{emu}| = |M_{etau}|$, and Class II defined by $|M_{mumu}| = |M_{tautau}|$. The important phenomenological distinction between the two is that Class I permits only small values of $V_{e3}$ up to $sim 0.03$, while Class II admits large values of $V_{e3}$ up to its empirical upper limit of 0.22. Then we introduce CP-violating complex phases into the mass matrix. We show that it is possible to have tribimaximal mixing with $M_{ee} = 0$ and $|M_{mutau}| = |M_{mumu}| = |M_{tautau}|$ if the Majorana phase angles are $pmpi/4$. Alternatively, for smaller values of $|M_{mutau}| = |M_{mumu}| = |M_{tautau}|$ it is possible to obtain $|V_{e3}| sim 0.2$ and generate relatively large CP-violating amplitudes. To eliminate phase redundancy, we emphasize rephasing any mass matrix with $M_{ee} = 0$ into a standard form with two complex phases. The discussion alternates between analytical and numerical but remains purely phenomenological, without any attempt to derive mass matrices from a fundamental theory.
In this work we have re-investigated two different kinds of texture zero ansatz of the low energy neutrino mass matrix in view of the Dark-Large-Mixing-Angle (DLMA) solution of the solar neutrino problem which can arise in the presence of non-standar
We discuss the Dirac CP violating phase $delta_{CP}$ in the Froggatt-Nielsen model for a neutrino mass matrix $M_ u$ imposing a condition ${rm det} [M_ u]=0$. This additional condition restricts the CP violating phase $delta_{CP}$ drastically. We fin
The interference of charge-changing interactions, weaker than the V-A Standard Model (SM) interaction and having a different Lorentz structure, with that SM interaction, can, in principle, produce effects near the end point of the Tritium beta decay
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We propose a model that all quark and lepton mass matrices have the same zero texture. Namely their (1,1), (1,3) and (3,1) components are zeros. The mass matrices are classified into two types I and II. Type I is consistent with the experimental data