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arXiv:hep-ph/0104123·v3·High Energy Physics — Phenomenology

Majorana Neutrinos and Same-Sign Dilepton Production at LHC and in Rare Meson Decays

A. Ali (DESY)🇩🇪 · A.V. Borisov🇷🇺 · N.B. Zamorin (Moscow State Univ.)🇷🇺

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Abstract

We discuss same-sign dilepton production mediated by Majorana neutrinos in high-energy proton-proton collisions for at the LHC energy TeV, and in the rare decays of , , , and mesons of the type . For the reaction, assuming one heavy Majorana neutrino of mass , we present discovery limits in the plane where are the mixing parameters. Taking into account the present limits from low energy experiments, we show that at LHC for the nominal luminosity L=100 fb there is no room for observable same-sign dilepton signals. However, increasing the integrated luminosity by a factor 30, one will have sensitivity to heavy Majorana neutrinos up to a mass TeV only in the dilepton channels and , but other dilepton states will not be detectable due to the already existing strong constraints. We work out a large number of rare meson decays, both for the light and heavy Majorana neutrino scenarios, and argue that the present experimental bounds on the branching ratios are too weak to set reasonable limits on the effective Majorana masses.

Comments: 18 pages, 4 figures (requires graphicx), a coefficient in Eq. (4) corrected leading to drastic reduction in the Majorana-induced same-sign dilepton cross-section at LHC; revised Figs. 2 and 3; references added

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