MXAN: a method for the quantitative structural analysis of the XANES energy region

M. Benfatto, G. Chillemi, E. Pace
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Abstract

X-ray absorption near-edge structure (XANES) spectroscopy is a powerful method for obtaining local structural and electronic information around a well defined absorbing site of matter in many possible different conditions. The MXAN method allows a complete fit of the XANES energy region in terms of a well defined set of structural parameters. This approach is based on the comparison between experimental data and many theoretical calculations performed by varying selected structural parameters starting from a putative structure, i.e. from a well defined initial geometrical configuration around the absorber. The X-ray photoabsorption cross sections are derived using full multiple-scattering theory, i.e. the scattering path operator is calculated exactly without any series expansion. In this way, the analysis can start from the edge without any limitations in the energy range and polarization conditions. In this chapter, details of MXAN are presented with some new improvements that allow the analysis of time-dependent XANES data and structurally disordered systems.
MXAN: XANES能区定量结构分析方法
x射线吸收近边结构(XANES)光谱是一种强大的方法,可以在许多可能的不同条件下获得物质明确吸收点周围的局部结构和电子信息。MXAN方法允许根据一组定义良好的结构参数对XANES能量区域进行完全拟合。这种方法是基于实验数据和许多理论计算之间的比较,这些计算是通过从假定的结构开始,即从吸收器周围定义良好的初始几何构型开始,改变选定的结构参数进行的。利用全多重散射理论推导出x射线光吸收截面,即在不进行任何级数展开的情况下精确计算出散射路径算符。这样,分析就可以从边缘开始,不受能量范围和极化条件的限制。在本章中,详细介绍了MXAN的一些新的改进,允许分析时间相关的XANES数据和结构无序的系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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