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Cryogenic R5912-20Mod Photomultiplier Tube Characterization for the ProtoDUNE Dual Phase Detector

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arxiv 1806.04571 v4 pith:QX2CX3IB submitted 2018-06-12 physics.ins-det hep-ex

classification physics.ins-dethep-ex
keywords detectorneutrinocryogenicdualphaseprotodunecurrentexperiment
verification ladder T0 review T1 audit T2 compute T3 formal

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The Deep Underground Neutrino Experiment (DUNE) is a dual-site experiment for long baseline neutrino oscillation studies, and for neutrino astrophysics and nucleon decay searches. The far detector is a 40-kton underground liquid argon time-projection-chamber (LAr TPC), in which the photon detector system adds precise timing capabilities. The ProtoDUNE dual phase detector will consist of a 6x6x6 m^3 LAr TPC to be operated at the CERN Neutrino Platform and the photon detection system will be formed by 8-inch cryogenic photomultipliers from Hamamatsu. The PMT model (R5912-20Mod) performance at cryogenic temperature is studied including dark current, gain, and linearity with the light intensity and pulse rate. In addition, the PMT base design is validated. At cold, a decrease of the PMT amplification, or fatigue effect, is measured as the PMT output current increases, either, due to high gain, light intensity or rate. Also, the characterisation results of the 40 photomultipliers to be used in ProtoDUNE dual phase are presented.

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Cited by 1 Pith paper

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  1. Photomultiplier Requirements and Pre-Calibration for the SABRE South Liquid Scintillator Veto

    physics.ins-det 2025-05 conditional novelty 4.0 of 10

    The 20 R5912 PMTs for the SABRE South veto meet performance requirements in bench tests, and prototype pulse-shape discrimination separates gammas from neutrons at the hundreds-of-keV scale.

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