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Single-pass STEM-EMCD on a zone axis using a patterned aperture: progress in experimental and data treatment methods

机译:使用图案化孔径的区域轴上的单通阀杆EMCD:实验和数据处理方法中的进展

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Measuring magnetic moments in ferromagnetic materials at atomic resolution is theoretically possible using the electron magnetic circular dichroism (EMCD) technique in a (scanning) transmission electron microscope ((S)TEM). However, experimental and data processing hurdles currently hamper the realization of this goal. Experimentally, the sample must be tilted to a zone-axis orientation, yielding a complex distribution of magnetic scattering intensity, and the same sample region must be scanned multiple times with sub-atomic spatial registration necessary at each pass. Furthermore, the weak nature of the EMCD signal requires advanced data processing techniques to reliably detect and quantify the result. In this manuscript, we detail our experimental and data processing progress towards achieving single-pass zone-axis EMCD using a patterned aperture. First, we provide a comprehensive data acquisition and analysis strategy for this and other EMCD experiments that should scale down to atomic resolution experiments. Second, we demonstrate that, at low spatial resolution, promising EMCD candidate signals can be extracted, and that these are sensitive to both crystallographic orientation and momentum transfer.
机译:理论上可以使用(扫描)透射电子显微镜((S)TEM)中的电子磁性圆形二色性(EMCD)技术来测量原子分辨率下的铁磁材料中的磁矩。然而,实验和数据处理障碍目前妨碍了实现这一目标的实现。通过实验,样品必须倾斜到区域轴取向,产生磁散射强度的复杂分布,并且必须在每次通过时对相同的样本区域扫描多次。此外,EMCD信号的弱性是需要高级数据处理技术来可靠地检测和量化结果。在本手稿中,我们详细介绍了我们使用图案孔径实现单通过区域轴EMCD的实验和数据处理进展。首先,我们为此和其他EMCD实验提供了全面的数据采集和分析策略,应扩大到原子分辨率实验。其次,我们证明,在低空间分辨率下,可以提取有希望的EMCD候选信号,并且这些对晶体取向和动量转移敏感。

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