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Impact of Compton Scatter on Material Decomposition Using a Photon Counting Spectral Detector

机译:COPPON散射对使用光子计数谱检测器进行材料分解的影响

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Photon counting spectral detectors are being investigated to allow better discrimination of multiple materials by collecting spectral data for every detector pixel. The process of material decomposition or discrimination starts with an accurate estimation of energy dependent attenuation of the composite object. Photoelectric effect and Compton scattering are two important constituents of the attenuation. Compton scattering while results in a loss of primary photon, also results in an increase in photon counts in the lower energy bins via multiple orders of scatter. This contribution to each energy bin may change with material properties, thickness and x-ray energies. There has been little investigation into the effect of this increase in counts at lower energies due to presence of these Compton scattered photons using photon counting detectors. Our investigations show that it is important to account for this effect in spectral decomposition problems.
机译:正在研究光子计数光谱探测器以允许通过为每个探测器像素收集光谱数据来更好地辨别多种材料。材料分解或辨别过程开始,精确地估计复合物体的能量依赖性衰减。光电效果和康普顿散射是衰减的两个重要组成部分。康普顿散射,同时导致初级光子的损失,也导致光子在较低能量箱中的增加通过多次散射。对每个能量箱的这种贡献可以随着材料特性,厚度和X射线能量而改变。由于使用光子计数检测器,由于存在这些康普顿散射的光子的存在,对较低能量的计数增加几乎没有调查。我们的调查表明,在光谱分解问题中造成这种效果是重要的。

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