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Characterization of the Hamamatsu 8-inch R14688-100 PMT

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arxiv 2311.05080 v2 pith:TNQ2HQWK submitted 2023-11-09 physics.ins-det hep-ex

classification physics.ins-dethep-ex
keywords photoelectronpmtsr14688-100characterizationdetectorshamamatsuinchlarge-scale
verification ladder T0 review T1 audit T2 compute T3 formal
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Large-scale optical neutrino and dark-matter detectors rely on large-area photomultiplier tubes (PMTs) for cost-effective light detection. The new R14688-100 8-inch PMT developed by Hamamatsu provides state-of-the-art timing resolution of around 1 ns (FWHM), which can help improve vertex reconstruction and enable Cherenkov and scintillation light separation in scintillation-based detectors. This PMT also provides excellent charge resolution, allowing for precision photoelectron counting and improved energy reconstruction. The Eos experiment is the first large-scale optical detector to utilize these PMTs. In this manuscript we present a characterization of the R14688-100 single photoelectron response, such as the transit-time spreads, the dark-rates, and the afterpulsing. The single photoelectron response measurements are performed for the 206 PMTs that will be used in Eos.

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  1. A Cost Effective Optimization of the hybrid-DOM Design for TRIDENT

    hep-ex 2025-07 conditional novelty 5.0 of 10

    Simulations show the 19-PMT, 4-inch hDOM for TRIDENT can match or exceed the 31-PMT, 3-inch design on neutrino efficiency and reconstruction, provided the 4-inch PMTs achieve comparable quantum efficiency and timing.

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