Quark and Lepton Mass Matrix Model with Only Six Family-Independent Parameters
arXiv:1510.05370 · doi:10.1103/PhysRevD.92.111301
Abstract
We propose a unified mass matrix model for quarks and leptons, in which sixteen observables of mass ratios and mixings of the quarks and neutrinos are described by using no family number-dependent parameters except for the charged lepton masses and only six family number-independent free parameters. The model is constructed by extending the so-called "Yukawaon" model to a seesaw type model with the smallest number of possible family number-independent free parameters. As a result, once the six parameters is fixed by the quark mixing and the mass ratios of quarks and neutrinos, no free parameters are left in the lepton mixing matrix. The results are in excellent agreement with the neutrino mixing data. We predict for the leptonic violating phase and meV for the effective Majorana neutrino mass.
10 pages, 2 figures, accepted version of a rapid communication i PRD
References in corpus (6)
- Big-Bang Nucleosynthesis
- Updated Values of Running Quark and Lepton Masses
- Yukawaon Model in the Quark Sector and Nearly Tribimaximal Neutrino Mixing
- Spectroscopy of Family Gauge Bosons
- Universal Bilinear Form of Quark and Lepton Mass Matrices
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Cited by in corpus (6)
- Flavon VEV Scales in U(3)U(3) Model
- Muon-Electron Conversion in a Family Gauge Boson Model
- Quark and Lepton Mass Matrices Described by Charged Lepton Masses
- A modified version of the Koide formula from flavor nonets in a scalar potential model and in a Yukawaon model
- Parameter-Independent Quark Mass Relation in the U(3)U(3) Model
- Structure of Right-Handed Neutrino Mass Matrix