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arXiv:2111.09480·v2·High Energy Physics — Experiment

Neutrino Physics Opportunities with the IsoDAR Source at Yemilab

J. Alonso🇺🇸 · C.A. Argüelles🇺🇸 · A. Bungau🇺🇸 · J.M. Conrad🇺🇸 · B. Dutta🇺🇸 · Y.D. Kim🇰🇷 · E. Marzec🇺🇸 · D. Mishins🇺🇸 · S.H. Seo🇰🇷 · M. Shaevitz🇺🇸 · J. Spitz🇺🇸 · A. Thompson🇺🇸 · L. Waites🇺🇸 · D. Winklehner🇺🇸

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Abstract

IsoDAR seeks to place a high-power-cyclotron and target combination, as an intense source of at the level of /year, close to a kiloton-scale neutrino detector in order to gain sensitivity to very short-baseline neutrino oscillations () and perform precision tests of the weak interaction, among other physics opportunities. Recently, IsoDAR has received preliminary approval to be paired with the 2.26~kton target volume liquid scintillator detector at the Yemi Underground Laboratory (Yemilab) in Korea, at a 17~m center-to-center baseline, and cavern excavation for IsoDAR is now complete. In this paper, we present the physics capabilities of IsoDAR@Yemilab in terms of sensitivity to oscillations (via inverse beta decay, IBD; ), including initial-state wavepacket effects, and the weak mixing angle (via elastic scattering off atomic electrons, ). We also introduce a study of IsoDAR sensitivity to new particles, such as a light boson, produced in the target that decays to .

Comments: 17 pages, 16 figures; this version presents a number of new physics topics and studies

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