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

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arxiv 2507.10256 v1 pith:73G4L4MZ submitted 2025-07-14 hep-ex physics.ins-det

classification hep-exphysics.ins-det
keywords inchneutrinodesignpmtstridentcostperformancedetector
verification ladder T0 review T1 audit T2 compute T3 formal
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TRIDENT is a planned multi-cubic-kilometer deep-sea neutrino telescope to be built in the South China Sea, designed to rapidly discover high-energy astrophysical neutrino sources with sensitivity to all neutrino flavors. Achieving this at scale requires a detector design that balances performance with power, cost, and mechanical simplicity. This study presents a cost-effective optimization of TRIDENT's hybrid Digital Optical Module (hDOM) design, comparing configurations using high-quantum-efficiency (QE) 3-inch PMTs and larger 4-inch PMTs, the latter evaluated with both baseline and enhanced QE assumptions. Using full-chain detector simulations incorporating site-specific seawater optical properties and realistic backgrounds, we assess performance in all-flavor neutrino detection efficiency, directional reconstruction, and tau neutrino flavor identification from 1 TeV to 10 PeV. We find that if 4-inch PMTs can achieve QE comparable to 3-inch PMTs, their performance matches or improves upon that of the 3-inch design, while significantly reducing channel count, power consumption, and cost. These findings support the 4-inch PMT hDOM as a promising and scalable choice for TRIDENT's future instrumentation.

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

  1. Design and Evaluation of a PMT High-Voltage system for Deepsea Neutrino Telescope

    hep-ex 2025-12 unverdicted novelty 3.0 of 10

    A Cockcroft-Walton HV system for 31 PMTs in a hybrid DOM delivers stable baseline, uniform gain, and sub-1.8 ns timing performance suitable for deep-sea neutrino detection.

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