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- W706749 abstract "Two flavor νμ → ντ mass-induced oscillations are a solid explanation of the experimental data concerning atmospheric neutrinos [1–4]. Other alternatives as the inclusion of sterile neutrinos [5, 6], νμ ↔ νe oscillations [4] or other exotics [7, 8], are strongly disfavored by the data, at least as “stand alone” interpretations. In this paper we consider the mass-induced neutrino oscillations as the leading mechanism for flavor transitions, and estimate upper limits on possible contributions of relativity violating effects (violation of the Lorentz invariance (VLI), or of the equivalence principle (VEP)) as subdominant ones [9, 10], using a subset of the MACRO upward-going muon data [11]. Both “exotic” contributions are described within the same formalism; in the following, for simplicity, we will refer only to VLI. We assume that neutrinos can be described in terms of three distinct bases: flavor eigenstates, mass eigenstates and velocity eigenstates, the latter being characterized by different maximum attainable velocities (MAVs), and consider that only two families contribute to the atmospheric neutrino oscillations. Thus, we may write" @default.
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- W706749 date "2004-01-01" @default.
- W706749 modified "2023-10-16" @default.
- W706749 title "Search for Possible Exotic Contributions to Atmospheric Neutrino Oscillations" @default.
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