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arXiv:1603.00018·v1·High Energy Physics — Phenomenology

Large, Extra Dimensions at the Deep Underground Neutrino Experiment

Jeffrey M. Berryman🇺🇸 · André de Gouvêa🇺🇸 · Kevin J. Kelly🇺🇸 · O.L.G. Peres🇧🇷 · Zahra Tabrizi🇧🇷

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Abstract

We investigate the potential of the long-baseline Deep Underground Neutrino Experiment (DUNE) to study large-extra-dimension (LED) models originally proposed to explain the smallness of neutrino masses by postulating that right-handed neutrinos, unlike all standard model fermion fields, can propagate in the bulk. The massive Kaluza-Klein (KK) modes of the right-handed neutrino fields modify the neutrino oscillation probabilities and can hence affect their propagation. We show that, as far as DUNE is concerned, the LED model is indistinguishable from a -neutrino framework for modest values of ; = 1 is usually a very good approximation. Nonetheless, there are no new sources of -invariance violation other than one -odd phase that can be easily mapped onto the -odd phase in the standard three-neutrino paradigm. We analyze the sensitivity of DUNE to the LED framework, and explore the capability of DUNE to differentiate the LED model from the three-neutrino scenario and from a generic -neutrino model.

Comments: 17 pages, 5 figures

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