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- W2260536447 abstract "We show how to incorporate the lepton sector in a supersymmetric theory of flavor based on the discrete flavor group ${({S}_{3})}^{3}$. Assuming that all possible nonrenormalizable operators are generated at the Planck scale, we show that the transformation properties of the leptons and of the flavor-symmetry-breaking fields are uniquely determined. We then demonstrate that the model has a viable phenomenology and makes one very striking prediction: the nucleon decays predominantly to $mathrm{Kl}$ where $l$ is a first generation lepton. We show that the modes $nensuremath{rightarrow}{K}^{0}{overline{ensuremath{nu}}}_{e}$, $pensuremath{rightarrow}{K}^{+}{overline{ensuremath{nu}}}_{e}$, and $pensuremath{rightarrow}{K}^{0}{e}^{+}$ occur at comparable rates, and could well be discovered simultaneously at the SuperKamiokande experiment." @default.
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- W2260536447 date "1996-06-01" @default.
- W2260536447 modified "2023-09-24" @default.
- W2260536447 title "(S3)3flavor symmetry andp→K0e+" @default.
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- W2260536447 doi "https://doi.org/10.1103/physrevd.53.6282" @default.
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