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Deuterated-xylene (xylene-d_(10); EJ301D): A new, improved deuterated liquid scintillator for neutron energy measurements without time-of-flight

机译:氘代二甲苯(xylene-d_(10); EJ301D):一种新型改进的氘代液体闪烁体,用于无飞行时间的中子能量测量

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摘要

In conjunction with Eljen Technology, Inc. (Sweetwater,TX) we have designed, constructed, and evaluated a 3 in. × 3 in. deuterated-xylene organic liquid scintillator (C_8D_(10); EJ301D) as a fast neutron detector. Similar to deuterated benzene (C_6D_6; NE230, BC537, and EJ315) this scintillator can provide good pulse-shape discrimination between neutrons and gamma rays, has good timing characteristics, and can provide a light spectrum with peaks corresponding to discrete neutron energy groups up to ca. 20 MeV. Unlike benzene-based detectors, deuterated xylene is less volatile, less toxic, is not known to be carcinogenic, has a higher flashpoint, and hence is much safer for many applications. In addition EJ301D can provide slightly more light output and better PSD than deuterated-benzene scintillators. We show that, as with deuterated-benzene scintillators, the light-response spectra can be unfolded to provide useable neutron energy spectra without need for time-of-flight (ToF). An array of these detectors arranged at many angles close to a reaction target can be much more effective ( × 10 to × 100 or more) than an array of long-path ToF detectors which must utilize a narrowly-bunched and pulse-selected beam. As we demonstrate using a small Van de Graaff accelerator, measurements can thus be performed when a bunched and pulse-selected beam (as needed for time-of-flight) is not available.
机译:我们与Eljen Technology,Inc.(Sweetwater,TX)一起设计,建造并评估了3英寸×3英寸氘代二甲苯有机液体闪烁器(C_8D_(10); EJ301D)作为快速中子探测器。与氘化苯(C_6D_6; NE230,BC537和EJ315)相似,该闪烁体可以提供良好的中子和伽马射线脉冲形识别,具有良好的定时特性,并且可以提供具有与离散中子能级对应的峰值的光谱ca. 20 MeV。与基于苯的检测器不同,氘代二甲苯挥发性小,毒性小,不致癌,闪点更高,因此对于许多应用而言更安全。此外,与氘代苯闪烁体相比,EJ301D可以提供更多的光输出和更好的PSD。我们表明,与氘化苯闪烁体一样,光响应谱可以展开以提供可用的中子能谱,而无需飞行时间(ToF)。与必须使用窄束和脉冲选择光束的长距离ToF检测器阵列相比,以接近反应目标的许多角度排列的这些检测器阵列可能更有效(×10至×100或更大)。正如我们使用小型Van de Graaff加速器所演示的,因此,当束状和脉冲选择的光束(飞行时间需要)不可用时,可以执行测量。

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