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Studies of time resolution, light yield, and crosstalk using SiPM-on-tile calorimetry for the future Electron-Ion Collider

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arxiv 2302.03646 v2 pith:ZSL4YDXZ submitted 2023-02-07 physics.ins-det hep-exnucl-ex

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

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We recently proposed a high-granularity calorimeter insert for the Electron-Ion Collider (EIC) that is based on plastic scintillator tiles readout with silicon photomultipliers. In this work, we concretize its design by characterizing its building blocks with measurements of light yield, optical crosstalk, and timing resolutions using cosmic-rays, an LED, and a beta source. We also compared two approaches for the optical isolation of cells: ``megatiles'' with grooved boundaries between cells, and a 3D-printed plastic frame hosting individual cells. We found that the latter suppresses optical crosstalk to negligible levels while providing an easier assembly method. Overall, these performance studies can help inform calorimeter design and realistic simulations of 5D showers (time, energy, position) for the EIC and other experiments.

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Cited by 2 Pith papers

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

  1. Feasibility Study of Measuring $\Lambda^0\to n\pi^{0}$ Using a High-Granularity Zero-Degree Calorimeter at the Future Electron-Ion Collider

    nucl-ex 2024-12 conditional novelty 7.0 of 10

    A Geant4 and graph-neural-network feasibility study shows the EIC Zero Degree Calorimeter can reconstruct Lambda0 -> n pi0 decays with resolutions that meet the EIC Yellow Report requirements.

  2. First-Ever Deployment of a SiPM-on-Tile Calorimeter in a Collider: A Parasitic Test with 200 GeV $pp$ Collisions at RHIC

    physics.ins-det 2025-01 conditional novelty 6.0 of 10

    A SiPM-on-tile calorimeter prototype was deployed, calibrated, and operated for the first time in a collider environment, withstanding about 1e10 1-MeV neutron-equivalent fluence at room temperature.

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