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Detector characterization for quantitative spectral radiography of uranium powder samples

机译:铀粉样品定量光谱射线照相的检测器表征

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摘要

The International Atomic Energy Agency (IAEA) is responsible for verifying the mass of elemental uranium in various forms (powders, pellets, scrap) as part of inspections at nuclear fuel fabrication facilities. Current methods require in-field dissolution chemistry, which is time consuming and imposes operational challenges. Pacific Northwest National Laboratory (PNNL) is developing a prototype spectral x-ray radiography (SpecX) nondestructive assay system for noninvasive material mass quantification of uranium-bearing powders. The SpecX system uses a custom material estimation algorithm, which requires a high-fidelity pixel-by-pixel detector response model for accurate quantification. We performed a detailed characterization and built a model of a High-Energy X-ray Imaging Technology (HEXITEC) CdTe pixelated spectral detector. Here we present the detector characterization which led to that model, including a determination of the pixel-wise energy calibration, the detection efficiency, the detector uniformity, the detector stability, and a comparison of methods to remove charge-shared events.
机译:国际原子能机构(IAEA)负责核查各种形式(粉末,颗粒,废料)形式的元素铀的质量,作为核燃料制造设施检查的一部分。当前的方法需要现场溶解化学,这是耗时的并且带来操作挑战。西北太平洋国家实验室(PNNL)正在开发一种原型X射线X射线照相术(SpecX)无损测定系统,用于含铀粉末的无损材料质量定量。 SpecX系统使用自定义的材料估计算法,该算法需要一个高保真逐像素检测器响应模型来进行准确定量。我们进行了详细的表征,并建立了高能X射线成像技术(HEXITEC)CdTe像素化光谱探测器的模型。在这里,我们介绍了导致该模型的检测器特性,包括确定逐像素能量校准,检测效率,检测器均匀性,检测器稳定性,以及去除电荷共享事件的方法比较。

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