Cascade Appearance Signatures of Sterile Neutrinos at 1-100 TeV
arXiv:2111.08722 · doi:10.1103/PhysRevD.105.052001
Abstract
Neutrino telescopes provide strong sensitivity to sterile neutrino oscillations through matter-enhanced oscillation, occurring in the few TeV energy range for eV-scale neutrino mass-squared splittings. Prior searches have focused on disappearance, which has a particularly strong sensitivity to the mixing angle via transitions. Nowadays, the and appearance channels have been considered less promising at neutrino telescopes, due in part to the much smaller target volume for cascades relative to tracks. This work explores the detectability of these signatures at neutrino telescopes given present constraints on sterile neutrino mixing, and as an example, forecasts the sensitivity of the IceCube Neutrino Observatory to the mixing angles , , and in the 3+1 sterile neutrino model using the cascade channel with ten years of data. We find that appearance signatures consistent with the existing IceCube disappearance best-fit point are discoverable for values of consistent with world constraints, and that the sterile neutrino parameters favored by the BEST and gallium anomalies are expected to be testable at the 95\% confidence level.
Implemented reviewer comments. Updated format of references, added a new reference, fixed several typos, made several clarifications, updated axis labels on a few plots, added some new discussion, and changed the color of a contour
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