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Geometrical factor influence on Compton profile measurement for biological samples

机译:几何因素对生物样品的康普顿轮廓测量的影响

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摘要

The Compton profile is a correction of the Klein-Nishina cross-section for the motion of the electrons. This correction modifies the shape of the Compton peak in the spectrum of the scattered photons and it depends on the atomic wave functions of the electrons inside the sample. Thus, the Compton profile can be used as a probe for the electronic structure of atoms or molecules. However, the shape of the Compton peak is also influenced from the geometrical factors or apertures of collimators used in the experimental setup. Since the energy of the Compton scattered photons depends on the scattering angle, in principle, the best choice is to collimate the detector as much as possible, but, as a drawback, this means also a drastic reduction of the photon flux at the detector. This paper deals with a study of the influence of the geometrical factor on the discrimination of different biological elements. The results can be extended to other materials. Some results from reference biological samples are reported and discussed.
机译:康普顿轮廓是电子运动的Klein-Nishina截面的校正。该校正改变了散射光子光谱中康普顿峰的形状,并且取决于样品内部电子的原子波函数。因此,康普顿轮廓可以用作原子或分子的电子结构的探针。但是,康普顿峰的形状也受到实验装置中使用的准直仪的几何因素或孔径的影响。由于康普顿散射光子的能量取决于散射角,原则上,最佳选择是使检测器尽可能准直,但是,缺点是,这也意味着检测器处的​​光子通量会大大降低。本文研究了几何因素对区分不同生物元素的影响。结果可以扩展到其他材料。报告和讨论了参考生物学样品的一些结果。

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