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Wave field restoration using three-dimensional Fourier filtering method

机译:三维傅里叶滤波法恢复波场

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摘要

A wave field restoration method in transmission electron microscopy (TEM) was mathematically derived based on a three-dimensional (3D) image formation theory. Wave field restoration using this method together with spherical aberration correction was experimentally confirmed in through-focus images of amorphous tungsten thin film, and the resolution of the reconstructed phase image was successfully improved from the Scherzer resolution limit to the information limit. In an application of this method to a crystalline sample, the surface structure of Au (110) was observed in a profile-imaging mode. The processed phase image showed quantitatively the atomic relaxation of the topmost layer.
机译:基于三维(3D)图像形成理论,数学推导了透射电子显微镜(TEM)中的波场恢复方法。通过实验证实了在非晶钨薄膜的透焦图像中使用该方法进行的波场恢复以及球差校正,并将重建的相位图像的分辨率从Scherzer分辨率极限成功提高到信息极限。在将该方法应用于晶体样品时,以轮廓成像模式观察到了Au(110)的表面结构。经过处理的相图像定量显示了最顶层的原子弛豫。

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