Neutrinoless double beta decay in supersymmetry with bilinear R-parity breaking
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Neutrinoless double beta decay in supersymmetry with bilinear R-parity breaking

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Neutrinoless double beta decay in supersymmetry with bilinear R-parity breaking

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Hirsch, Martin; Furtado Valle, José Wagner Perfil
Aquest document és un/a article, creat/da en: 1999
We reanalyze the contributions to neutrinoless double beta ($\znbb$) decay from supersymmetry with explicit breaking of R-parity. Although we keep both bilinear and trilinear terms, our emphasis is put on bilinear R-parity breaking terms, because these mimic more closely the models where the breaking of R-parity is spontaneous. Comparing the relevant Feynman diagrams we conclude that the usual mass mechanism of double beta decay is the dominant one. From the non-observation of $\znbb$ decay we set limits on the bilinear R-parity breaking parameters of typically a (few) 100 keV. Despite such stringent bounds, we stress that the magnitude of R-parity violating phenomena that can be expected at accelerator experiments can be very large, since they involve mainly the third generation, while $\znbb$ decay constrains only the first generation couplings.

    Hirsch, Martin Furtado Valle, José Wagner 1999 Neutrinoless double beta decay in supersymmetry with bilinear R-parity breaking Nuclear Physics B 557 1-2 60 78
http://dx.doi.org/10.1016/S0550-3213(99)00368-5
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