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Initial Performance Testing of Sri Gamma Spectroscopy Scintillators and Comparison to Other Improved-Resolution Detectors for Typical Health Physics Applications

机译:斯里伽玛光谱闪烁体的初始性能测试以及与其他针对典型健康物理应用的改进分辨率探测器的比较

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Europium-doped Strontium Iodide (SrI) scintillation gamma detectors have only recently become commercially available. SrI has very high light output ranging from 80,000-100,000 ph/MeV and energy resolution as good as 2.9% at 662 keV and 14.8% at 32 keV. The high density of 4.6?g/cc in combination with a high effective Atomic number and the absence of internal activity make SrI a very attractive sensor material for spectroscopic radiation monitoring devices. This new entrant into the field of commercially available gamma spectroscopy detectors offers improved energy resolution over NaI, without the elevated background of LaBr. While CZT and HPGe detectors have better resolution, the small available size of CZT and the cooling requirement of HPGe limit their usefulness in portable applications. Of these scintillators, SrI2 has the lowest detection limits when compared to other equal- size scintillation detectors, especially at low energies where U and Pu are of interest.
机译:recently掺杂的碘化锶(SrI)闪烁伽马探测器直到最近才开始商业化。 SrI具有非常高的光输出,范围为80,000-100,000 ph / MeV,能量分辨率在662 keV时为2.9%,在32 keV时为14.8%。 4.6µg / cc的高密度加上有效的原子序数和内部活性的缺乏,使SrI成为光谱辐射监测设备的一种非常有吸引力的传感器材料。这种进入商用伽马光谱检测器领域的新进入者提供了比NaI更高的能量分辨率,而无需提高LaBr的本底。尽管CZT和HPGe探测器具有更好的分辨率,但CZT的可用尺寸小和HPGe的散热要求限制了它们在便携式应用中的实用性。在这些闪烁体中,与其他等尺寸的闪烁检测器相比,SrI2具有最低的检测极限,尤其是在U和Pu受到关注的低能量情况下。

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