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Imaging antiferromagnetic antiphase domain boundaries using magnetic Bragg diffraction phase contrast

机译:使用磁布拉格衍射相衬成像反铁磁反相畴边界

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摘要

Manipulating magnetic domains is essential for many technological applications. Recent breakthroughs in Antiferromagnetic Spintronics brought up novel concepts for electronic device development. Imaging antiferromagnetic domains is of key importance to this field. Unfortunately, some of the basic domain types, such as antiphase domains, cannot be imaged by conventional techniques. Herein, we present a new domain projection imaging technique based on the localization of domain boundaries by resonant magnetic diffraction of coherent X rays. Contrast arises from reduction of the scattered intensity at the domain boundaries due to destructive interference effects. We demonstrate this approach by imaging antiphase domains in a collinear antiferromagnet Fe2Mo3O8, and observe evidence of domain wall interaction with a structural defect. This technique does not involve any numerical algorithms. It is fast, sensitive, produces large-scale images in a single-exposure measurement, and is applicable to a variety of magnetic domain types.
机译:对于许多技术应用而言,操纵磁畴至关重要。反铁磁自旋电子学的最新突破为电子设备开发提出了新颖的概念。成像反铁磁畴对这一领域至关重要。不幸的是,某些基本域类型,例如反相域,无法通过常规技术进行成像。在本文中,我们提出了一种新的域投影成像技术,该技术基于通过相干X射线的共振磁衍射对域边界进行定位的技术。相比之下,由于相消干涉效应,域边界处的散射强度降低而产生了对比度。我们通过在共线反铁磁体Fe2Mo3O8中成像反相畴来证明这种方法,并观察到畴壁相互作用与结构缺陷的证据。此技术不涉及任何数值算法。它快速,灵敏,可在单次曝光测量中生成大规模图像,并且适用于各种磁畴类型。

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