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Comparison of Cadmium-Zinc-Telluride semiconductor and Yttrium-Aluminum-Perovskite scintillator as photon detectors for epithermal neutron spectroscopy

机译:镉-锌-碲化物半导体与钇铝-钙钛矿闪烁体作为超热中子光谱光子探测器的比较

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摘要

The range of applications of epithermal neutron scattering experiments has been recently extended by the development of the Resonance Detector. In a Resonance Detector, resonant neutron absorption in an analyzer foil results in prompt emission of X- and grays which are detected by a photon counter. Several combinations of analyzer foils and photon detectors have been studied and tested over the years and best results have been obtained with the combination of a natural uranium and (i) Cadmium–Zinc–Telluride (CZT) semiconductor, (ii) Yttrium–Aluminum–Perovskite (YAP) scintillators. Here we compare the performance of the CZT semiconductorudand YAP scintillator as Resonance Detector units.udTwo Resonance Detector prototypes made of natural uranium foil viewed by CZT and YAP were tested on the VESUVIO spectrometer at the ISIS spallation neutron source. The results show that both YAP and CZT can be used to detect epithermal neutrons in the energy range from 1 up to 66 eV. It was found that the signal-to-background ratio of the measurement can significantly beudimproved by raising the lower level discrimination threshold on the g energy to about 600 keV. The advantages/disadvantages of the choice of a Resonance Detector based on YAP or CZT are discussed together with some potential applications.
机译:超热中子散射实验的应用范围最近随着共振检测器的发展而扩展。在共振检测器中,分析器箔片中的共振中子吸收会导致迅速发射X和灰度,并由光子计数器检测到。多年来,已经对分析器箔片和光子探测器的几种组合进行了研究和测试,并且使用天然铀和(i)镉-锌-碲化物(CZT)半导体,(ii)钇-铝-钙钛矿(YAP)闪烁体。在这里,我们比较了CZT半导体 ud和YAP闪烁体作为共振检测器的性能。 ud在ISIS散裂中子源的VESUVIO光谱仪上测试了由CZT和YAP观察到的两个由天然铀箔制成的共振检测器原型。结果表明,YAP和CZT均可用于检测1至66 eV能量范围内的超热中子。已发现,通过将g能量的较低水平判别阈值提高到约600 keV,可以显着改善测量的信噪比。讨论了基于YAP或CZT的共振检测器选择的优缺点以及一些潜在的应用。

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