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BENT-CRYSTAL SPECTROMETER ANALYZING PLUTONIUM K X-RAYS FOR APPLICATIONS IN NUCLEAR FORENSICS

机译:弯曲ENT谱仪分析P K X射线在核法医学中的应用

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The ability to quickly quantify the Pu content within spent nuclear fuel (SNF) is essential to nuclear forensics. Analysis of the Pu to U ratio can provide information on fuel which could contribute to the attribution of a fuel sample. Plutonium concentration data can be acquired through non-destructive analysis (NDA) by detecting self-induced x-ray fluorescence (XRF) from Pu in the fuel. However, during conventional spectroscopy, the characteristic Pu x-ray peak of interest lies beneath background and requires an extended exposure time. Bent-crystal spectrometers allow x-rays of selected energies, obeying Bragg's law for coherent scattering of incident photons, to be focused directly onto a detector, thus providing a high signal with limited background by decreasing the possible Compton interaction in the detector. Determining a useable crystal and experimental geometry that allowed for the study of high energy x-rays requires additional attention. While previous experiments investigating wavelength dispersive bent crystals have been performed, they were primarily concerned with lower x-ray energies (<60 keV). The Pu fluorescent x-rays of interest are from the plutonium K-series, ranging from 99.55 to 120.70 keV.
机译:快速量化乏核燃料(SNF)中Pu含量的能力对于核法证学至关重要。 Pu / U比的分析可以提供有关燃料的信息,这可能有助于燃料样品的归因。通过检测燃料中Pu的自感应X射线荧光(XRF),可通过无损分析(NDA)获取浓度数据。然而,在常规光谱学中,感兴趣的特征性Pu x射线峰位于背景之下,并且需要延长的曝光时间。弯曲晶体光谱仪允许将选定能量的X射线直接遵循光入射的规则,从而遵循入射光子的相干散射的布拉格定律,从而通过减少检测器中可能发生的康普顿相互作用,在有限的背景下提供高信号。确定允许研究高能X射线的可用晶体和实验几何形状需要额外注意。虽然已经进行了调查波长色散弯曲晶体的先前实验,但它们主要与较低的X射线能量(<60 keV)有关。感兴趣的Pu荧光X射线来自K K系列,范围从99.55到120.70 keV。

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