Skip to content

Design and characterization of large-size monolithic layers of 3D-segmented plastic scintillator

Jon Berisha, Xingyu Zhao, Andrey Boyarintsev, Sebastien Cap, Diogo Di Calafiori, Maksim Kiktev, Umut Kose, Anzhelika Kuzmina, Natalia Leskina, André Rubbia, Tetiana Sibilieva, Tim Weber, Davide Sgalaberna

physics.ins-detarXiv:2609.19684

Abstract

Three-dimensional fine-grained plastic scintillator detectors are extensively used in high-energy physics experiments where particle tracking, identification, calorimetry and sub-nanosecond timing information are required. Moreover, the low cost of plastic scintillator makes, in principle, the scalability to multi-tonne detectors possible. In order to circumvent the difficulties related to the long production time and the challenging assembly of millions of tiny independent scintillating voxels, a new technology consisting of gluing a few thousand 9 × 9 × 9 mm3 plastic scintillator cubes in a single large monolithic layer with machining precision, while ensuring an efficient optical separation, was developed and demonstrated. In this work we demonstrate that such technology can be reliably extended to a monolithic layer of 48 × 48 optically-isolated scintillating cubes, the size required for future ton-scale detectors, fulfilling the requirements of future neutrino detectors and sampling calorimeters.

Create a lesson