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Resonance refraction and neutrino oscillations

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arxiv 2106.13829 v1 pith:PT6ETODC submitted 2021-06-25 hep-ph hep-ex

classification hep-phhep-ex
keywords backgroundresonanceenergypotentialrefractionbumpdependenceinteractions
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abstract

The refraction index and matter potential depend on neutrino energy and this dependence has a resonance character associated to the production of the mediator in the $s-$channel. For light mediators and light particles of medium (background) the resonance can be realized at energies accessible to laboratory experiments. We study properties of the energy dependence of the potential for different C-asymmetries of background. Interplay of the background potential and the vacuum term leads to (i) bump in the oscillation probability in the resonance region, (ii) dip related to the MSW resonance in the background, (iii) substantial deviation of the effective $\Delta m^2$ above the resonance from the low energy value, etc. We considered generation of mixing in the background. Interactions with background shifts the energy of usual MSW resonance and produces new MSW resonances. Searches of the background effects allow us to put bounds on new interactions of neutrinos and properties of the background. We show that explanation of the MiniBooNE excess, as the bump due to resonance refraction, is excluded.

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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. Probing long-range $L_e-L_\mu$ forces with supernova neutronization burst neutrinos

    hep-ph 2026-07 accept novelty 5.5 of 10

    DUNE can use a nearby supernova neutronization burst to constrain ultralight Le−Lμ gauge forces via distortions of the electron-neutrino survival probability.

  2. Testing non-standard neutrino properties

    hep-ph 2025-01 unverdicted novelty 1.0 of 10

    A review of non-standard neutrino properties, summarizing proposals for dark-matter-induced mass, decays, pseudo-Dirac neutrinos, sterile neutrinos, and non-standard interactions.

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