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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Angular distribution of elastic electron backscattering from surfaces: determination of the electron inelastic mean free path
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Angular distribution of elastic electron backscattering from surfaces: determination of the electron inelastic mean free path

机译:从表面向后散射的弹性电子的角分布:电子非弹性平均自由程的确定

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摘要

The development of analytical techniques based on measurements of electron elastic-backscattering probabilities stimulated an interest in the theoretical description of such phenomena. The most accurate and reliable theoretical models involve Monte Carlo (MC) simulations of electron trajectories in solids; however, this approach generally requires considerable computer effort. It has been shown that the performance of a modified analytical theory originally proposed by Oswald et al (1993 J. Electron Spectrosc. Relat. Phenom. 61 251), designated with the acronym OKGM, compares reasonably well with MC calculations. The MC data are usually underestimated by the OKGM model, and the mean percentage deviation, averaged over nine elements and five energies up to 5 keV, is equal to 8.8% for typical experimental configurations. However, the agreement between ratios of backscattering probabilities from MC simulations and the OKGM model agree much better due to the fact that underestimation of backscattering probability by the OMGM theory is partially cancelled. The percentage deviation between ratios from these theoretical models decreases to 3.14%. The OKGM model should then be useful for determining inelastic mean free paths (IMFPs) from measured elastic-peak intensities. The accuracy of the obtained IMFPs is comparable with IMFPs from MC simulations.
机译:基于电子弹性反向散射概率测量的分析技术的发展激发了对这种现象的理论描述的兴趣。最准确,最可靠的理论模型包括固体电子轨迹的蒙特卡洛(MC)模拟。但是,这种方法通常需要大量的计算机工作。已经显示,最初由Oswald等人(1993 J. Electron Spectrosc。Relat。Phenom。61 251)提出的改进分析理论的性能与MC计算相当好。通常,OKGM模型会低估MC数据,对于典型的实验配置,平均偏差百分比在9个元素和5个能量(最高5 keV)上取平均值,等于8.8%。然而,由于OMGM理论对反向散射概率的低估被部分抵消的事实,MC模拟的反向散射概率之比与OKGM模型之间的一致性好得多。这些理论模型的比率之间的百分比偏差降低到3.14%。然后,OKGM模型对于根据测得的弹性峰强度确定非弹性平均自由程(IMFP)很有用。所获得的IMFP的准确性与MC模拟的IMFP相当。

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