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IMAGE-WARP: A real-space restoration method for high-resolution STEM images using quantitative HRTEM analysis

机译:IMAGE-WARP:使用定量HRTEM分析的高分辨率STEM图像的真实空间恢复方法

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We have developed a new method for processing distorted high-resolution scanning transmission electron microscopy (STEM) images. The method is based on finding the displaced vertices in the experimental STEM image and warping to geometrically correct reference grid of the object. As a reference grid for warping a structural model obtained using a high-resolution transmission electron microscopy (HRTEM) analysis of the area of interest is utilised. Combined with quantitative HRTEM analysis the IMAGE-WARP method provides a real-space restoration of high-resolution high-angle annular dark-field (HAADF) STEM images without affecting the original Z-contrast information. The method can be applied to extract valuable compositional atomic-column data from any HAADF-STEM image of any kind of bulk crystals with local occupancy or chemistry fluctuations, stacking faults, special grain boundaries or interfaces, for which we have an available structural model. After the warping, distortion-corrected images can be further enhanced using conventional image-filtering techniques, and finally quantified with HAADF-STEM image simulations. The applicability of the IMAGE-WARP method was illustrated using experimental HAADF-STEM images of a strontium titanate crystal disrupted with a Ruddlesden-Popper-type antiphase boundary.
机译:我们已经开发了一种新的方法来处理扭曲的高分辨率扫描透射电子显微镜(STEM)图像。该方法基于在实验STEM图像中找到位移的顶点并变形以对对象的参考网格进行几何校正。作为用于变形的参考网格,使用了对感兴趣区域进行高分辨率高分辨率电子显微镜(HRTEM)分析获得的结构模型。结合定量HRTEM分析,IMAGE-WARP方法提供了高分辨率高角度环形暗场(HAADF)STEM图像的真实空间恢复,而不会影响原始的Z对比度信息。该方法可用于从任何具有局部占有率或化学波动,堆垛层错,特殊晶界或界面的块状晶体的任何HAADF-STEM图像的HAADF-STEM图像中提取有价值的组成原子列数据,对此我们拥有可用的结构模型。变形后,可以使用常规的图像滤波技术进一步增强失真校正后的图像,并最终通过HAADF-STEM图像模拟对其进行量化。 IMAGE-WARP方法的适用性通过用Ruddlesden-Popper型反相边界破坏的钛酸锶晶体的实验HAADF-STEM图像进行了说明。

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