English

Improved eV-scale Sterile-Neutrino Constraints from the Second KATRIN Measurement Campaign

High Energy Physics - Experiment 2022-05-04 v1

Abstract

We present the results of the light sterile neutrino search from the second KATRIN measurement campaign in 2019. Approaching nominal activity, 3.76×1063.76 \times 10^6 tritium β\beta-electrons are analyzed in an energy window extending down to 4040\,eV below the tritium endpoint at E0=18.57E_0 = 18.57\,keV. We consider the 3ν+13\nu+1 framework with three active and one sterile neutrino flavor. The analysis is sensitive to a fourth mass eigenstate m421600m_4^2\lesssim1600\,eV2^2 and active-to-sterile mixing Ue426×103|U_{e4}|^2 \gtrsim 6 \times 10^{-3}. As no sterile-neutrino signal was observed, we provide improved exclusion contours on m42m_4^2 and Ue42|U_{e4}|^2 at 9595\,% C.L. Our results supersede the limits from the Mainz and Troitsk experiments. Furthermore, we are able to exclude the large Δm412\Delta m_{41}^2 solutions of the reactor antineutrino and gallium anomalies to a great extent. The latter has recently been reaffirmed by the BEST collaboration and could be explained by a sterile neutrino with large mixing. While the remaining solutions at small Δm412\Delta m_{41}^2 are mostly excluded by short-baseline reactor experiments, KATRIN is the only ongoing laboratory experiment to be sensitive to relevant solutions at large Δm412\Delta m_{41}^2 through a robust spectral shape analysis.

Keywords

Cite

@article{arxiv.2201.11593,
  title  = {Improved eV-scale Sterile-Neutrino Constraints from the Second KATRIN Measurement Campaign},
  author = {M. Aker and D. Batzler and A. Beglarian and J. Behrens and A. Berlev and U. Besserer and B. Bieringer and F. Block and S. Bobien and B. Bornschein and L. Bornschein and M. Böttcher and T. Brunst and T. S. Caldwell and R. M. D. Carney and S. Chilingaryan and W. Choi and K. Debowski and M. Descher and D. Díaz Barrero and P. J. Doe and O. Dragoun and G. Drexlin and F. Edzards and K. Eitel and E. Ellinger and R. Engel and S. Enomoto and A. Felden and J. A. Formaggio and F. M. Fränkle and G. B. Franklin and F. Friedel and A. Fulst and K. Gauda and A. S. Gavin and W. Gil and F. Glück and R. Grössle and R. Gumbsheimer and V. Hannen and N. Haußmann and K. Helbing and S. Hickford and R. Hiller and D. Hillesheimer and D. Hinz and T. Höhn and T. Houdy and A. Huber and A. Jansen and C. Karl and J. Kellerer and M. Kleifges and M. Klein and C. Köhler and L. Köllenberger and A. Kopmann and M. Korzeczek and A. Kovalík and B. Krasch and H. Krause and L. La Cascio and T. Lasserre and T. L. Le and O. Lebeda and B. Lehnert and A. Lokhov and M. Machatschek and E. Malcherek and M. Mark and A. Marsteller and E. L. Martin and C. Melzer and S. Mertens and J. Mostafa and K. Müller and H. Neumann and S. Niemes and P. Oelpmann and D. S. Parno and A. W. P. Poon and J. M. L. Poyato and F. Priester and J. Ráliš and S. Ramachandran and R. G. H. Robertson and W. Rodejohann and C. Rodenbeck and M. Röllig and C. Röttele and M. Ryšavý and R. Sack and A. Saenz and R. Salomon and P. Schäfer and L. Schimpf and M. Schlösser and K. Schlösser and L. Schlüter and S. Schneidewind and M. Schrank and A. Schwemmer and M. Šefčík and V. Sibille and D. Siegmann and M. Slezák and F. Spanier and M. Steidl and M. Sturm and H. H. Telle and L. A. Thorne and T. Thümmler and N. Titov and I. Tkachev and K. Urban and K. Valerius and D. Vénos and A. P. Vizcaya Hernández and C. Weinheimer and S. Welte and J. Wendel and M. Wetter and C. Wiesinger and J. F. Wilkerson and J. Wolf and S. Wüstling and J. Wydra and W. Xu and S. Zadoroghny and G. Zeller},
  journal= {arXiv preprint arXiv:2201.11593},
  year   = {2022}
}

Comments

14 pages, 8 figures, 2 tables