Publication:
Analytical description of the time-over-threshold method based on time properties of plastic scintillators equipped with silicon photomultipliers

Дата
2024
Авторы
Karpushkin, N.
Finogeev, D.
Guber, F.
Lyapin, D.
Journal Title
Journal ISSN
Volume Title
Издатель
Научные группы
Организационные подразделения
Организационная единица
Институт ядерной физики и технологий
Цель ИЯФиТ и стратегия развития - создание и развитие научно-образовательного центра мирового уровня в области ядерной физики и технологий, радиационного материаловедения, физики элементарных частиц, астрофизики и космофизики.
Выпуск журнала
Аннотация
A new highly granular neutron detector (HGND) for the identification and energy measurement of neutrons produced in nucleusў??nucleus interactions at the BM@N experiment, Dubna, Russia, at energies up to 4 AGeV is under development. The detector consists of approximately 2000 fast plastic scintillators, each with dimensions of 40 ѓ? 40 ѓ? 25 mm3, equipped with SiPM (Silicon Photomultiplier) with an active area of 6 ѓ? 6 mm2. The signal readout from these scintillators will employ a single-threshold multichannel Time-to-Digital Converter (TDC) to measure their response time and charge using the time-over-threshold (ToT) method. This article focuses on the analytical description of the signals from the plastic scintillator detectors equipped with silicon photomultipliers. This description is crucial for establishing the ToT to charge relationship and implementing slewing correction techniques to improve the time resolution of the detector.
Описание
Ключевые слова
Silicon Photomultiplier , Scintillation Detectors , Liquid Scintillation Counting , Inorganic Scintillators
Цитирование
Analytical description of the time-over-threshold method based on time properties of plastic scintillators equipped with silicon photomultipliers / Karpushkin, N. [et al.] // Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. - 2024. - 1068. - 10.1016/j.nima.2024.169739
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