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Neutron detection and application with a novel 3D-projection scintillator tracker in the future long-baseline neutrino oscillation experiments

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arxiv 2211.17037 v1 pith:FBCGDQBJ submitted 2022-11-30 hep-ex hep-phphysics.ins-det

classification hep-exhep-phphysics.ins-det
keywords neutrinoenergyneutrondetectionexperimentskineticoscillationconstraint
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Neutrino oscillation experiments require a precise measurement of the neutrino energy. However, the kinematic detection of the final-state neutron in the neutrino interaction is missing in current neutrino oscillation experiments. The missing neutron kinematic detection results in a feed-down of the detected neutrino energy compared to the true neutrino energy. A novel 3D\textcolor{black}{-}projection scintillator tracker, which consists of roughly ten million active cubes covered with an optical reflector, is capable of measuring the neutron kinetic energy and direction on an event-by-event basis using the time-of-flight technique thanks to the fast timing, fine granularity, and high light yield. The $\bar{\nu}_{\mu}$ interactions tend to produce neutrons in the final state. By inferring the neutron kinetic energy, the $\bar{\nu}_{\mu}$ energy can be reconstructed better, allowing a tighter incoming neutrino flux constraint. This paper shows the detector's ability to reconstruct neutron kinetic energy and the $\bar{\nu}_{\mu}$ flux constraint achieved by selecting the charged-current interactions without mesons or protons in the final state.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Construction, commissioning, and beam test of a pilot 3D-projection opaque water-based liquid scintillator detector

    physics.ins-det 2026-05 conditional novelty 6.0 of 10

    A pilot 3D-projection detector with opaque water-based liquid scintillator achieves light scattering length below 2 cm and single-channel timing resolution of 0.17-0.28 ns in 50-500 MeV proton beam tests.

  2. A new diffuse reflector filament for additive manufacturing of 3D printing finely-segmented plastic scintillator

    physics.ins-det 2026-04 unverdicted novelty 6.0 of 10

    A new TiO2- and PTFE-loaded PC/PMMA filament enables 3D-printed reflective layers for segmented plastic scintillators with performance comparable to conventional detectors.

  3. A new diffuse reflector filament for additive manufacturing of 3D printing finely-segmented plastic scintillator

    physics.ins-det 2025-09 conditional novelty 6.0 of 10

    A new 3D-printable reflective filament made of PMMA or polycarbonate with TiO2 and PTFE reduces optical crosstalk between scintillator cells to 0.7% while matching or improving light yield.

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