A Dynamical mechanism for quark mixing and neutrino oscillations
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A Dynamical mechanism for quark mixing and neutrino oscillations

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A Dynamical mechanism for quark mixing and neutrino oscillations

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Bordes Villagrasa, José M.; Chan, Hong-Mo; Tsou, Sheung Tsun
This document is a artículoDate1999

Este documento está disponible también en : http://hdl.handle.net/10550/42715
We show that, if one assumes fermion generations to be given by a gauge symmetry, together with a certain Higgs mechanism for breaking it, then the known empirical features of quark and lepton mixing can be largely explained, including, in particular, the fact that the mixing (CKM) matrix element U-mu 3, responsible for the muon anomaly in atmospheric neutrinos, is near maximal, and much larger than its quark counterparts V-cb and V-ts, while the corner elements for both quarks (V-ub, V-td) and leptons (U-e3) are all very small. The mechanism also automatically gives a hierarchical fermion-mass spectrum which is intimately related to the mixing pattern.

    Bordes Villagrasa, José M. Chan, Hong-Mo Tsou, Sheung Tsun 1999 A Dynamical mechanism for quark mixing and neutrino oscillations European Physical Journal C 10 1 63 70
http://dx.doi.org/10.1007/s100529900092

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