Precision Light Yield and Crosstalk Characterization for the SuperFGD scintillator cubes

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Alekseev, I., Chvirova, A., Danilov, M., Fedotov, S., Khotjantsev, A., Kolupanova, M., Kozlenko, N., Krapiva, A., Kudenko, Y., Mefodiev, A., Mineev, O., Novinsky, D., Samigullin, E., Skrobova, N., Svirida, D.
Format: Preprint
Published: 2026
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866914563921805312
author Alekseev, I.
Chvirova, A.
Danilov, M.
Fedotov, S.
Khotjantsev, A.
Kolupanova, M.
Kozlenko, N.
Krapiva, A.
Kudenko, Y.
Mefodiev, A.
Mineev, O.
Novinsky, D.
Samigullin, E.
Skrobova, N.
Svirida, D.
author_facet Alekseev, I.
Chvirova, A.
Danilov, M.
Fedotov, S.
Khotjantsev, A.
Kolupanova, M.
Kozlenko, N.
Krapiva, A.
Kudenko, Y.
Mefodiev, A.
Mineev, O.
Novinsky, D.
Samigullin, E.
Skrobova, N.
Svirida, D.
contents A detailed study of a $5\times5\times5$ cube prototype of the SuperFGD detector was performed using a 730 MeV/$c$ pion beam at the SC-1000 synchrocyclotron (PNPI, Gatchina, Russia). The detector, based on plastic scintillation cubes with orthogonal wavelength-shifting (WLS) fiber readout and silicon photomultipliers (SiPMs), was tested to evaluate its performance in terms of light yield, spatial uniformity, and optical crosstalk. Using high-resolution tracking, the spatial distribution of light yield was mapped with a granularity of 0.5 mm. An average light response map was obtained by combining data from 27 cubes. Optical crosstalk between adjacent cubes was also measured and characterized in four directions (left, right, up, down). Position-dependent crosstalk values ranged from 2% to 6%, with the highest levels observed near cube interfaces. These results confirm the excellent performance and scalability of the SuperFGD design, and provide valuable input for simulation tuning and reconstruction algorithms in the ND280 upgrade of the T2K experiment. The obtained result on the response uniformity and crosstalk are reasonably well described by simple MC model of the setup.
format Preprint
id arxiv_https___arxiv_org_abs_2601_18338
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Precision Light Yield and Crosstalk Characterization for the SuperFGD scintillator cubes
Alekseev, I.
Chvirova, A.
Danilov, M.
Fedotov, S.
Khotjantsev, A.
Kolupanova, M.
Kozlenko, N.
Krapiva, A.
Kudenko, Y.
Mefodiev, A.
Mineev, O.
Novinsky, D.
Samigullin, E.
Skrobova, N.
Svirida, D.
Instrumentation and Detectors
A detailed study of a $5\times5\times5$ cube prototype of the SuperFGD detector was performed using a 730 MeV/$c$ pion beam at the SC-1000 synchrocyclotron (PNPI, Gatchina, Russia). The detector, based on plastic scintillation cubes with orthogonal wavelength-shifting (WLS) fiber readout and silicon photomultipliers (SiPMs), was tested to evaluate its performance in terms of light yield, spatial uniformity, and optical crosstalk. Using high-resolution tracking, the spatial distribution of light yield was mapped with a granularity of 0.5 mm. An average light response map was obtained by combining data from 27 cubes. Optical crosstalk between adjacent cubes was also measured and characterized in four directions (left, right, up, down). Position-dependent crosstalk values ranged from 2% to 6%, with the highest levels observed near cube interfaces. These results confirm the excellent performance and scalability of the SuperFGD design, and provide valuable input for simulation tuning and reconstruction algorithms in the ND280 upgrade of the T2K experiment. The obtained result on the response uniformity and crosstalk are reasonably well described by simple MC model of the setup.
title Precision Light Yield and Crosstalk Characterization for the SuperFGD scintillator cubes
topic Instrumentation and Detectors
url https://arxiv.org/abs/2601.18338