Performance and pulse shape discrimination of glass scintillator SG101 for neutron detection

Fuente: arXiv
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Main Authors: Liu, Yuhang, An, Fengpeng, Luo, Guang, Wang, Wei, Wei, Wei, Zhang, Xuesong, Lu, Dixiao, Yin, Xiaohao
Format: Preprint
Published: 2026
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author Liu, Yuhang
An, Fengpeng
Luo, Guang
Wang, Wei
Wei, Wei
Zhang, Xuesong
Lu, Dixiao
Yin, Xiaohao
author_facet Liu, Yuhang
An, Fengpeng
Luo, Guang
Wang, Wei
Wei, Wei
Zhang, Xuesong
Lu, Dixiao
Yin, Xiaohao
contents We present a detailed characterization of the thermal neutron sensitive transparent glass scintillator SG101, benchmarked against the conventional LiF ZnS(Ag)based scintillator EJ426. The detection efficiency, energy resolution, and pulse shape discrimination (PSD) performance ofSG101 were evaluated under AmBe neutron irradiation. When coupled with organic scintillators(EJ200 or EJ276),the SG101 EJ200 system achieves a figure of merit (FOM) of 3.81 for thermal neutron/gamma separation, while the SG101 EJ276 configuration resolves three distinct particle populations gamma rays, fast neutrons, and thermal neutrons with FOM values of 3.46 and2.21, respectively. Correlation analysis reveals that the number of fast thermal neutron coincidence events significantly exceeds the accidental background, and the count of gamma fast thermal neutron triple-coincidence events is also far higher than the expected accidental rate, confirming significant physical correlations for both event types within a 100 us time window. These results demonstrate that SG101 is a promising candidate for applications requiring high-efficiency thermal neutron detection and precise event tagging coupling with a scintillator with PSD approach
format Preprint
id arxiv_https___arxiv_org_abs_2602_11597
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Performance and pulse shape discrimination of glass scintillator SG101 for neutron detection
Liu, Yuhang
An, Fengpeng
Luo, Guang
Wang, Wei
Wei, Wei
Zhang, Xuesong
Lu, Dixiao
Yin, Xiaohao
Instrumentation and Detectors
High Energy Physics - Experiment
We present a detailed characterization of the thermal neutron sensitive transparent glass scintillator SG101, benchmarked against the conventional LiF ZnS(Ag)based scintillator EJ426. The detection efficiency, energy resolution, and pulse shape discrimination (PSD) performance ofSG101 were evaluated under AmBe neutron irradiation. When coupled with organic scintillators(EJ200 or EJ276),the SG101 EJ200 system achieves a figure of merit (FOM) of 3.81 for thermal neutron/gamma separation, while the SG101 EJ276 configuration resolves three distinct particle populations gamma rays, fast neutrons, and thermal neutrons with FOM values of 3.46 and2.21, respectively. Correlation analysis reveals that the number of fast thermal neutron coincidence events significantly exceeds the accidental background, and the count of gamma fast thermal neutron triple-coincidence events is also far higher than the expected accidental rate, confirming significant physical correlations for both event types within a 100 us time window. These results demonstrate that SG101 is a promising candidate for applications requiring high-efficiency thermal neutron detection and precise event tagging coupling with a scintillator with PSD approach
title Performance and pulse shape discrimination of glass scintillator SG101 for neutron detection
topic Instrumentation and Detectors
High Energy Physics - Experiment
url https://arxiv.org/abs/2602.11597