4.7 Article

Supersymmetric seesaw mechanism without singlet neutrinos: Neutrino masses and lepton-flavor violation

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PHYSICAL REVIEW D
卷 66, 期 7, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.66.075003

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We consider the supersymmetric seesaw mechanism induced by the exchange of heavy SU(2)(W) triplet states, rather than right-handed neutrino singlets, to generate neutrino masses. We show that in this scenario the neutrino flavor structure tested at low-energy in the atmospheric and solar neutrino experiments is directly inherited from the neutrino Yukawa couplings to the triplets. This allows us to predict the ratio of the tau-->mugamma (or tau-->egamma) and mu-->egamma decay rates in terms of the low-energy neutrino parameters. Moreover, once the model is embedded in a grand unified model, quark-flavor violation can be linked to lepton-flavor violation.

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