Evaluation of different rectangular scan strategies for HRSTEM imaging

Abner Velazco Torrejón
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Abstract

Scanning transmission electron microscopes (STEMs) equipped with spherical aberration correctors are well known for their ability to obtain images with atomic scale information. The conventional ‘raster’ method scans the probe over the sample line by line. HRSTEM (High resolution STEM) imaging is typically performed by scanning a focused electron probe over a sample at sub-Ångstrom resolution. At such high resolution images, distortions are commonly present because of drift of the sample/stage during raster scanning, predominantly affecting the so-called ‘slow scan direction’ [1].
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不同矩形扫描策略在HRSTEM成像中的评价
配备球差校正器的扫描透射电子显微镜(stem)以其获得原子尺度信息的能力而闻名。传统的“光栅”方法是将探针逐行扫描样品。HRSTEM(高分辨率STEM)成像通常是通过在低于-Ångstrom分辨率的样品上扫描聚焦电子探针来完成的。在如此高分辨率的图像中,由于光栅扫描期间样品/级的漂移,通常存在畸变,主要影响所谓的“慢扫描方向”[1]。
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