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首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >HAADF-STEM Image Resolution Enhancement Using High-Quality Image Reconstruction Techniques: Case of the Fe3O4(111) Surface
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HAADF-STEM Image Resolution Enhancement Using High-Quality Image Reconstruction Techniques: Case of the Fe3O4(111) Surface

机译:HAADF-STEM图像分辨率使用高质量图像重建技术提高:FE3O4(111)表面的情况

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摘要

From simple averaging to more sophisticated registration and restoration strategies, such as super-resolution (SR), there exist different computational techniques that use a series of images of the same object to generate enhanced images where noise and other distortions have been reduced. In this work, we provide qualitative and quantitative measurements of this enhancement for high-angle annular dark-field scanning transmission electron microscopy imaging. These images are compared in two ways, qualitatively through visual inspection in real and reciprocal space, and quantitatively, through the calculation of objective measurements, such as signal-to-noise ratio and atom column roundness. Results show that these techniques improve the quality of the images. In this paper, we use an SR methodology that allows us to take advantage of the information present in the image frames and to reliably facilitate the analysis of more difficult regions of interest in experimental images, such as surfaces and interfaces. By acquiring a series of cross-sectional experimental images of magnetite (Fe3O4) thin films (111), we have generated interpolated images using averaging and SR, and reconstructed the atomic structure of the very top surface layer that consists of a full monolayer of Fe, with topmost Fe atoms in tetrahedrally coordinated sites.
机译:从简单的平均到更复杂的登记和恢复策略,例如超分辨率(SR),存在不同的计算技术,该技术使用相同对象的一系列图像来产生增强的图像,其中噪声和其他失真已经减少。在这项工作中,我们提供了对高角度环形暗场扫描透射电子显微镜成像的这种增强的定性和定量测量。这些图像以两种方式进行比较,通过实际和往复空间的目视检查,并通过计算客观测量,例如信噪比和原子柱圆度。结果表明,这些技术提高了图像的质量。在本文中,我们使用SR方法,使我们能够利用图像帧中存在的信息,并可靠地促进对实验图像中更困难的感兴趣区域的分析,例如表面和接口。通过获取一系列磁铁矿(Fe3O4)薄膜(111)的横截面实验图像,我们使用平均和Sr产生了内插图像,并重建了由Fe的全单层组成的非常顶部表面层的原子结构,具有最高的Fe原子在四面体协调的位置。

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