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利用X射线光电子能谱显微镜对交换偏置的Fe/MnPd双层膜中不对称磁化反转进行直接成像。

Direct imaging of asymmetric magnetization reversal in exchange-biased Fe/MnPd bilayers by x-ray photoemission electron microscopy.

作者信息

Blomqvist P, Krishnan Kannan M, Ohldag H

机构信息

Materials Science and Engineering, University of Washington, Seattle, Washington 98195, USA.

出版信息

Phys Rev Lett. 2005 Mar 18;94(10):107203. doi: 10.1103/PhysRevLett.94.107203. Epub 2005 Mar 16.

Abstract

X-ray photoemission electron microscopy is used to probe the remnant magnetic domain structure in high quality, single-crystalline, exchange-biased Fe/MnPd bilayers. It is found that the induced unidirectional anisotropy strongly affects the overall magnetic domain structure. Real space images of the ferromagnetic domains provide direct evidence for an asymmetric magnetization reversal process after saturation along the ferromagnetic hard direction. The magnetization reversal occurs by moment rotation for decreasing fields while it proceeds by domain nucleation and growth for increasing fields. The observed domains are consistent with the crystallography of the bilayers and favor a configuration that minimizes the overall magnetostatic energy of the ferromagnetic layer.

摘要

利用X射线光电子能谱显微镜对高质量、单晶、具有交换偏置的Fe/MnPd双层膜中的剩余磁畴结构进行探测。研究发现,诱导的单向各向异性强烈影响整体磁畴结构。铁磁畴的实空间图像为沿铁磁硬方向饱和后不对称的磁化反转过程提供了直接证据。对于磁场减小的情况,磁化反转通过磁矩旋转发生;而对于磁场增加的情况,磁化反转通过磁畴成核和生长进行。观察到的磁畴与双层膜的晶体学一致,并且倾向于一种使铁磁层的整体静磁能最小化的构型。

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