大体积SrI2(Eu)闪烁体探测器的评价

B. Sturm, N. Cherepy, O. Drury, P. Thelin, S. Fisher, A. Magyar, S. Payne, A. Burger, L. Boatner, J. O. Ramey, K. Shah, R. Hawrami
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引用次数: 21

摘要

对能量分辨率高、探测效率高、能在室温下工作的伽玛射线探测器的需求日益增长。我们正在努力通过开发大体积SrI2(Eu)闪烁体探测器来满足这些要求。在这项工作中,我们评估了各种体积为bbb10 cm3的SrI2晶体。这项研究的目的是检查大型探测器能量分辨率下降的原因,并确定可以做些什么来减轻这些影响。测试了封装和未封装的检测器,我们一致地使用封装检测器获得了更好的分辨率。使用准直伽玛射线源,确定了封装探测器的更好的能量分辨率与更好的光收集均匀性相关。制作并测试了多个封装的探测器,在662keV下,3% Eu掺杂晶体的能量分辨率为2.93% FWHM,获得了最佳的光谱性能。为了更好地理解闪烁体中的光输运物理,还对SrI2(Eu)晶体进行了模拟。该研究对用于国家安全目的的SrI2(Eu)探测器的开发具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of large volume SrI2(Eu) scintillator detectors
There is an ever increasing demand for gamma-ray detectors which can achieve good energy resolution, high detection efficiency, and room-temperature operation. We are working to address each of these requirements through the development of large volume SrI2(Eu) scintillator detectors. In this work, we have evaluated a variety of SrI2 crystals with volumes >10 cm3. The goal of this research was to examine the causes of energy resolution degradation for larger detectors and to determine what can be done to mitigate these effects. Testing both packaged and unpackaged detectors, we have consistently achieved better resolution with the packaged detectors. Using a collimated gamma-ray source, it was determined that better energy resolution for the packaged detectors is correlated with better light collection uniformity. A number of packaged detectors were fabricated and tested and the best spectroscopic performance was achieved for a 3% Eu doped crystal with an energy resolution of 2.93% FWHM at 662keV. Simulations of SrI2(Eu) crystals were also performed to better understand the light transport physics in scintillators and are reported. This study has important implications for the development of SrI2(Eu) detectors for national security purposes.
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