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Solving self-absorption in fluorescence

机译:解决荧光中的自吸收

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One of the most common types of experiment in X-ray absorption spectroscopy (XAS) measures the secondary inelastically scattered fluorescence photon. This widespread approach has a dominant systematic of self-absorption of the fluorescence photon. The large impact of self-absorption compromises accuracy, analysis and insight. Presented here is a detailed self-consistent method to correct for self-absorption and attenuation in fluorescence X-ray measurements. This method and the resulting software package can be applied to any fluorescence data, for XAS or any other experimental approach detecting fluorescence or inelastically scattered radiation, leading to a general solution applicable to a wide range of experimental investigations. The high intrinsic accuracy of the processed data allows these features to be well modelled and yields deeper potential insight.
机译:X射线吸收光谱(XAS)中最常见的实验类型之一是测量次要非弹性散射荧光光子。这种广泛的方法具有主要的荧光光子自吸收系统。自我吸收的巨大影响会影响准确性,分析能力和洞察力。这里介绍的是一种详细的自洽方法,用于校正荧光X射线测量中的自吸收和衰减。该方法和生成的软件包可以应用于XAS的任何荧光数据或检测荧光或非弹性散射辐射的任何其他实验方法,从而导致适用于广泛实验研究的通用解决方案。处理后的数据具有很高的固有准确性,可以对这些特征进行很好的建模,并产生更深的潜在洞察力。

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