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Beam test results of a fully 3D-printed plastic scintillator particle detector prototype

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arxiv 2412.10174 v3 pith:MDO4F3PI submitted 2024-12-13 physics.ins-det hep-ex

classification physics.ins-dethep-ex
keywords lightprototypescintillatorcubesmanufacturingplasticyieldadditive
verification ladder T0 review T1 audit T2 compute T3 formal
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Plastic scintillators are widely used for the detection of elementary particles, and 3D reconstruction of particle tracks is achieved by segmenting the detector into 3D granular structures. In this study, we present a novel prototype fabricated by additive manufacturing, consisting of a 5 x 5 x 5 array of 1 cm3 plastic scintillator cubes, each optically isolated. This innovative approach eliminates the need to construct complex monolithic geometries in a single operation and gets rid of the traditional time-consuming manufacturing and assembling processes. The prototype underwent performance characterization during a beam test at CERN's Proton-Synchrotron facility. Light yield, optical crosstalk, and light response uniformity, were evaluated. The prototype demonstrated a consistent light yield of approximately 27 photoelectrons (p.e.) per channel, similar to traditional cast scintillator detectors. Crosstalk between adjacent cubes averaged 4-5%, and light yield uniformity within individual cubes exhibited about 7% variation, indicating stability and reproducibility. These results underscore the potential of the novel additive manufacturing technique, for efficient and reliable production of high-granularity scintillator detectors.

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

  1. A new diffuse reflector filament for additive manufacturing of 3D printing finely-segmented plastic scintillator

    physics.ins-det 2025-09 conditional novelty 6.0 of 10

    A new 3D-printable reflective filament made of PMMA or polycarbonate with TiO2 and PTFE reduces optical crosstalk between scintillator cells to 0.7% while matching or improving light yield.

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