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Liquid-organic time projection chamber for detecting low energy antineutrinos

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arxiv 2203.01090 v4 pith:5ZIBOI4B submitted 2022-03-02 physics.ins-det

classification physics.ins-det
keywords energyantineutrinoantineutrinoschamberdetectdirectionfinalliquid-organic
verification ladder T0 review T1 audit T2 compute T3 formal

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The MeV region of antineutrino energy is of special interest for physics research and for monitoring nuclear nonproliferation. Whereas liquid scintillation detectors are typically used to detect the Inverse Beta Decay (IBD), it has recently been proposed to detect it with a liquid-organic Time Projection Chamber, which could allow a full reconstruction of the particle tracks of the IBD final state. We present the first comprehensive simulation-based study of the expected signatures. Their unequivocal signature could enable a background-minimized detection of electron antineutrinos using information on energy, location and direction of all final state particles. We show that the positron track reflects the antineutrino's vertex. It can also be used to determine the initial neutrino energy. In addition, we investigate the possibility to reconstruct the antineutrino direction on an event-by-event basis by the energy deposition of the neutron-induced proton recoils. Our simulations indicate that this could be a promising approach which should be further studied through experiments with a detector prototype.

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  1. Enhancing Angular Sensitivity of Segmented Antineutrino Detectors for Reactor Monitoring

    hep-ex 2026-03 conditional novelty 5.0 of 10

    A Frobenius-norm template-matching algorithm estimates antineutrino direction from neutron-capture patterns in segmented detectors, with an optimal segment size near the mean neutron track length (~70 mm) at low counts.

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