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Pulse-Shape Discrimination Capabilities of the RMD Plastic Scintillator as Compared to the EJ-299-33 Plastic Scintillator

机译:与EJ-299-33塑料闪烁体相比,RMD塑料闪烁体的脉冲形状识别能力

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Advances in plastic scintillation compositions have led to new scintillation detectors capable of correctlyidentifying neutron and gamma-ray photon pulses through pulse shape discrimination (PSD). The goal of this paper isto explore the PSD capabilities of a plastic scintillator produced by Radiation Monitoring Devices, Inc. (RMD) andcompare it to both the EJ-309 liquid scintillator and the EJ-299-33 plastic scintillator [5]. Neutron time of flight datawas taken from ~(252)Cf for all the RMD plastic and EJ-309 detectors, and a PSD algorithm was applied to each detector.The study shows that the RMD plastic has adequate PSD, with a figure of merit of 0.86 for a threshold of 120 keVee.This compares favorably to the PSD for the EJ-299-33 figure of merit of 0.82, but the EJ-309 liquid detector gives afigure of merit of 1.44 at the same measurement threshold. In addition, the neutron detection efficiency for the RMDdetector is within 3% of the EJ-299-33 detector, but the EJ-309 liquid detector is 1.6 times more efficient.
机译:塑料闪烁组合物的进步导致了新的能够正确检测闪烁的探测器 通过脉冲形状鉴别(PSD)识别中子和伽马射线光子脉冲。本文的目标是 探索由Radiation Monitoring Devices,Inc.(RMD)生产的塑料闪烁体的PSD功能,以及 将其与EJ-309液体闪烁器和EJ-299-33塑料闪烁器进行比较[5]。中子飞行时间数据 对于所有RMD塑料和EJ-309检测器,均从〜(252)Cf中提取,并且将PSD算法应用于每个检测器。 研究表明,RMD塑料具有足够的PSD,对于120 keVee的阈值,品质因数为0.86。 与EJ-299-33品质因数为0.82的PSD相比,它具有优势,但EJ-309液体检测器提供了一个 在相同的测量阈值下的品质因数为1.44。此外,RMD的中子探测效率 探测器的效率不到EJ-299-33探测器的3%,但EJ-309液体探测器的效率是后者的1.6倍。

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