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Neutron-γ discrimination with organic scintillators: Intrinsic pulse shape and light yield contributions

机译:中子 - γ与有机闪烁体的辨别:内在脉冲形状和光率贡献

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A comparative study of the neutron-γ Pulse Shape Discrimination (PSD) with seven organic scintillators is performed using an identical setup and digital electronics. The scintillators include plastics (EJ-299-33 and a plastic prototype), single crystals (stilbene and the recent doped p-terphenyl) and liquids (BC501A, NE213 and the deuterated liquid BC537). First, the overall PSD performance of the different scintillators is compared and threshold neutron energies for a given discrimination quality are determined. Then, using statistical arguments, two intrinsic contributions to the PSD capability of the scintillating materials are disentangled: the light yield and the specific pulse shapes induced by neutrons and /-rays. This separation provides additional insight into the behaviour of organic scintillators and allows a detailed comparison of the discrimination performance of the various materials. On the basis of this analysis, limitations of current organic scintillators and of recently proposed alternative scintillators are discussed.
机译:使用相同的设置和数字电子进行七种有机闪烁体的中子-γ脉冲形状辨别(PSD)的比较研究。闪烁体包括塑料(EJ-299-33和塑料原型),单晶(斯蒂烯和近期掺杂的P-三苯基)和液体(BC501A,NE213和氘代液BC537)。首先,比较不同闪烁体的整体PSD性能,并确定具有给定辨别质量的阈值中子能量。然后,使用统计争论,对闪烁材料的PSD能力的两个内在贡献被解开:光产率和中子和/ - / - rays诱导的特定脉冲形状。这种分离提供了对有机闪烁体的行为的额外洞察力,并允许详细比较各种材料的辨别性能。在该分析的基础上,讨论了当前有机闪烁体和最近提出的替代闪烁体的限制。

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