Testing nonstandard neutrino properties with a Mössbauer oscillation experiment

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Abstract

If the neutrino analogue of the Mössbauer effect, namely, recoiless emission and resonant capture of neutrinos is realized, one can study neutrino oscillations with much shorter baselines and smaller source/detector size when compared to conventional experiments. In this work, we discuss the potential of such a Mössbauer neutrino oscillation experiment to probe nonstandard neutrino properties coming from some new physics beyond the standard model. We investigate four scenarios for such new physics that modify the standard oscillation pattern. We consider the existence of a light sterile neutrino that can mix with νe, the existence of a Kaluza-Klein tower of sterile neutrinos that can mix with the flavor neutrinos in a model with large flat extra dimensions, neutrino oscillations with nonstandard quantum decoherence and mass varying neutrinos, and discuss to which extent one can constrain these scenarios. We also discuss the impact of such new physics on the determination of the standard oscillation parameters. © SISSA 2011.

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MacHado, P. A. N., Nunokawa, H., Dos Santos, F. A. P., & Funchal, R. Z. (2011). Testing nonstandard neutrino properties with a Mössbauer oscillation experiment. Journal of High Energy Physics, 2011(11). https://doi.org/10.1007/JHEP11(2011)136

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