Letter of Intent to Construct a nuPRISM Detector in the J-PARC Neutrino Beamline
S. Bhadra, A. Blondel, S. Bordoni, A. Bravar, C. Bronner, J., Caravaca-Rodriguez, M. Dziewiecki, T. Feusels, G.A. Fiorentini-Aguirre, M., Friend, L. Haegel, M. Hartz, R. Henderson, T. Ishida, M. Ishitsuka, C. K., Jung, A. C. Kaboth, H. Kakuno, H. Kamano, A. Konaka, Y. Kudenko

TL;DR
The nuPRISM detector aims to improve neutrino interaction measurements and reduce uncertainties in oscillation experiments by providing direct lepton kinematics data across a range of energies, aiding future projects like Hyper-Kamiokande.
Contribution
This paper proposes a novel detector design that directly measures neutrino interactions over a continuous energy spectrum, reducing modeling uncertainties in neutrino oscillation studies.
Findings
Potential to significantly reduce neutrino interaction uncertainties.
First measurements of neutral current interactions as a function of energy.
Probing sterile neutrino oscillations with multiple energy spectra.
Abstract
As long-baseline neutrino experiments enter the precision era, the difficulties associated with understanding neutrino interaction cross sections on atomic nuclei are expected to limit experimental sensitivities to oscillation parameters. In particular, the ability to relate experimental observables to neutrino energy in previous experiments has relied solely on theoretical models of neutrino-nucleus interactions, which currently suffer from very large theoretical uncertainties. By observing charged current interactions over a continuous range of off-axis angles from 1 to 4 degrees, the nuPRISM water Cherenkov detector can provide a direct measurement of the far detector lepton kinematics for any given set of oscillation parameters, which largely removes neutrino interaction modeling uncertainties from T2K oscillation measurements. This naturally provides a direct constraint…
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Taxonomy
TopicsNeutrino Physics Research · Particle physics theoretical and experimental studies · Astrophysics and Cosmic Phenomena
