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Direct neutrino-mass measurement with sub-electronvolt sensitivity

Author(s)
Formaggio, Joseph
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Abstract
Since the discovery of neutrino oscillations, we know that neutrinos have non-zero mass. However, the absolute neutrino-mass scale remains unknown. Here we report the upper limits on effective electron anti-neutrino mass, mν, from the second physics run of the Karlsruhe Tritium Neutrino experiment. In this experiment, mν is probed via a high-precision measurement of the tritium β-decay spectrum close to its endpoint. This method is independent of any cosmological model and does not rely on assumptions whether the neutrino is a Dirac or Majorana particle. By increasing the source activity and reducing the background with respect to the first physics campaign, we reached a sensitivity on mν of 0.7 eV c–2 at a 90% confidence level (CL). The best fit to the spectral data yields m2ν = (0.26 ± 0.34) eV2 c–4, resulting in an upper limit of mν < 0.9 eV c–2 at 90% CL. By combining this result with the first neutrino-mass campaign, we find an upper limit of mν < 0.8 eV c–2 at 90% CL.
Date issued
2022-02
URI
https://hdl.handle.net/1721.1/141776
Department
Massachusetts Institute of Technology. Laboratory for Nuclear Science
Journal
Nature Physics
Publisher
Springer Science and Business Media LLC
Citation
Formaggio, Joseph. 2022. "Direct neutrino-mass measurement with sub-electronvolt sensitivity." Nature Physics, 18 (2).
Version: Final published version

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