Oscillation properties of active and sterile neutrinos and neutrino anomalies at short distances


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Abstract

A generalized phenomenological (3 + 2 + 1) model featuring three active and three sterile neutrinos that is intended for calculating oscillation properties of neutrinos for the case of a normal activeneutrino mass hierarchy and a large splitting between the mass of one sterile neutrino and the masses of the other two sterile neutrinos is considered. A new parametrization and a specific form of the general mixing matrix are proposed for active and sterile neutrinos with allowance for possible CP violation in the lepton sector, and test values are chosen for the neutrino masses and mixing parameters. The probabilities for the transitions between different neutrino flavors are calculated, and graphs representing the probabilities for the disappearance of muon neutrinos/antineutrinos and the appearance of electron neutrinos/antineutrinos in a beam of muon neutrinos/antineutrinos versus the distance from the neutrino source for various values of admissible model parameters at neutrino energies not higher than 50 MeV, as well as versus the ratio of this distance to the neutrino energy, are plotted. It is shown that the short-distance accelerator anomaly in neutrino data (LNSD anomaly) can be explained in the case of a specific mixing matrix for active and sterile neutrinos (which belongs to the a2 type) at the chosen parameter values. The same applies to the short-distance reactor and gallium anomalies. The theoretical results obtained in the present study can be used to interpret and predict the results of ground-based neutrino experiments aimed at searches for sterile neutrinos, as well as to analyze some astrophysical observational data.

About the authors

V. V. Khruschov

National Research Center Kurchatov Institute; Center for Gravitation and Fundamental Metrology

Author for correspondence.
Email: khruschov_vv@nrcki.ru
Russian Federation, pl. Akademika Kurchatova 1, Moscow, 123182; Ozernaya ul. 46, Moscow, 119361

S. V. Fomichev

National Research Center Kurchatov Institute; Moscow Institute of Physics and Technology (State University)

Email: khruschov_vv@nrcki.ru
Russian Federation, pl. Akademika Kurchatova 1, Moscow, 123182; Institutskii per. 9, Dolgoprudnyi, Moscow oblast, 141700

O. A. Titov

National Research Center Kurchatov Institute

Email: khruschov_vv@nrcki.ru
Russian Federation, pl. Akademika Kurchatova 1, Moscow, 123182

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