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arXiv:1009.5536·v3·High Energy Physics — Phenomenology

Resolution of puzzles from the LSND, KARMEN, and MiniBooNE experiments

Sergei Gninenko🇷🇺

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Abstract

This work has attempted to reconcile puzzling neutrino oscillation results from the LSND, KARMEN and MiniBooNE experiments. We show that the LSND evidence for oscillations, its long-standing disagreement with the results from KARMEN, and the anomalous event excess observed by MiniBooNE in and data could all be explained by the existence of a heavy sterile neutrino (). All these results are found to be consistent with each other assuming that the is created in neutral-current interactions and decays radiatively into a photon and a light neutrino. Assuming the is produced through mixing with , the combined analysis of the LSND and MiniBooNe excess events suggests that the mass is in the range from 40 to 80 MeV, the mixing strength is , and the lifetime is s. Surprisingly, this LSND-MiniBooNE parameters window is found to be unconstrained by the results from the most sensitive experiments searching for heavy neutrino. We set new limits on for the LSND-MiniBooNE favorable mass region from the precision measurements of the Michel spectrum by the TWIST experiment. The results obtained provide a strong motivation for a sensitive search for the in a near future decay or neutrino experiments, which fit well in the existing/planned experimental programs at CERN or FNAL. The question of whether the heavy neutrino is Dirac or Majorana particle is briefly discussed.

Comments: 24 pages, 28 figures, version to appear in PRD

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