arXiv · hep-ph/0601104
Lepton Mass Hierarchy and Neutrino Mixing
Abstract
We speculate that the mass spectrum of three neutrinos might have a normal hierarchy as that of three charged leptons or that of three up-type (or down-type) quarks. In this spirit, we propose a novel parametrization of the $3\times 3$ lepton flavor mixing matrix. Its mixing angles $θ_l$ and $θ_ν$ can be related to the mass ratios $m_e/m_μ$ and $m_1/m_2$ in a specific texture of lepton mass matrices with vanishing (1,1) elements: $\tanθ_l = \sqrt{m_e/m_μ}$ and $\tanθ_ν= \sqrt{m_1/m_2}$. The latter relation, together with solar and atmospheric neutrino oscillation data, predicts 0.0030 eV $\lesssim m_1 \lesssim$ 0.0073 eV, 0.009 eV $\lesssim m_2 \lesssim $ 0.012 eV and 0.042 eV $\lesssim m_3 \lesssim$ 0.058 eV. The smallest neutrino mixing angle is found to be $θ_{13} \approx θ_l/\sqrt{2} \approx 3^\circ$, which is experimentally accessible in the near future.
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Harald Fritzsch, Zhi-zhong Xing. 2006-01-13. Lepton Mass Hierarchy and Neutrino Mixing. https://doi.org/10.1016/j.physletb.2006.02.028
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