arXiv · 1401.6616
A universal form for quark and neutrino mass matrices
Abstract
We propose a universal form for quark and lepton mass matrices, which applies in a ``leading order'' approximation where $CP$-violating phases are ignored. Down-quark mass ratios are successfully predicted in our scheme using the measured CKM mixing angles as input. Assuming an additional discrete symmetry in the neutrino sector, we obtain the ``golden ratio'' pattern in the leading-order PMNS mixing matrix; in addition we predict an inverted neutrino mass hierarchy with $m_1\simeq m_2 \simeq74 meV$, $m_3\simeq 55 meV$, and neutrinoless double beta decay mass parameter $m_{0νββ}\simeq 33~ meV$. We also predict that the $CP$-violating angle in the neutrino sector is close to the maximal value $δ=\pmπ/2$, and that the diagonal phases in the PMNS matrix are $α_1\simeq 0$, $α_2\simeqπ$.
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Zheng-Cheng Gu, John Preskill. 2014-02-22. A universal form for quark and neutrino mass matrices. https://doi.org/10.1103/physrevd.92.113005
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