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首页> 外文期刊>Journal of Electron Spectroscopy and Related Phenomena >Features of atomic images reconstructed from photoelectron, Auger electron, and internal detector electron holography using SPEA-MEM
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Features of atomic images reconstructed from photoelectron, Auger electron, and internal detector electron holography using SPEA-MEM

机译:使用SPEA-MEM从光电子,俄歇电子和内部检测器电子全息图重建的原子图像的特征

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摘要

Three-dimensional atomic images can be reconstructed from photoelectron, Auger electron, and internal detector electron holograms using a scattering pattern extraction algorithm using the maximum entropy method (SPEA-MEM) that utilizes an integral transform. An integral kernel function for the integral transform is the key to clear atomic image reconstruction. We composed the kernel function using a scattering pattern function and estimated its ability. Image distortion caused by multiple scattering was also evaluated. Four types of Auger electron wave functions were investigated, and the effect of these wave function types was estimated. In addition, we addressed refraction at the surface, the effects of data limitation, and energy and angular resolutions.
机译:可以使用散射图提取算法,利用利用积分变换的最大熵方法(SPEA-MEM),从光电子,俄歇电子和内部检测器电子全息图重建三维原子图像。积分变换的积分核函数是清除原子图像重建的关键。我们使用散射模式函数组成了核函数,并估计了其功能。还评估了由多重散射引起的图像失真。研究了四种类型的俄歇电子波函数,并评估了这些波函数类型的影响。此外,我们还讨论了表面折射,数据限制的影响以及能量和角度分辨率。

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