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Limit on sterile neutrino contribution from the Mainz Neutrino Mass Experiment

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arxiv 1210.4194 v2 pith:7EEAPRTL submitted 2012-10-15 hep-ex nucl-ex

classification hep-exnucl-ex
keywords neutrinomassfourthstatedataexperimentbeencontribution
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The recent analysis of the normalization of reactor antineutrino data, the calibration data of solar neutrino experiments using gallium targets, and the results from the neutrino oscillation experiment MiniBooNE suggest the existence of a fourth light neutrino mass state with a mass of O(eV), which contributes to the electron neutrino with a sizable mixing angle. Since we know from measurements of the width of the Z0 resonance that there are only three active neutrinos, a fourth neutrino should be sterile (i.e., interact only via gravity). The corresponding fourth neutrino mass state should be visible as an additional kink in beta-decay spectra. In this work the phase II data of the Mainz Neutrino Mass Experiment have been analyzed searching for a possible contribution of a fourth light neutrino mass state. No signature of such a fourth mass state has been found and limits on the mass and the mixing of this fourth mass states are derived.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Effective Matter Flavor Conversion Mediated by Pseudo-Sterile States as the Possible Origin of Neutrino Oscillation Anomalies

    hep-ph 2026-05 conditional novelty 6.0 of 10

    A sterile neutrino with a novel density-dependent matter potential Vs resolves multiple oscillation anomalies when Vs is negative and mixing angles are small.

  2. Probing the 3+1 neutrino model in the SHiP experiment

    hep-ph 2025-05 conditional novelty 5.0 of 10

    SHiP with a far detector at 120 m is projected to reach |U_alpha4|^2 ~ 10^-2 near Delta m^2_41 ~ 10^3 eV^2, exceeding current muon and tau mixing limits.

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