Magnetic proximity effects in antiferromagnetic composite thin films: Roles of triggering perpendicular magnetic anisotropy

Bo-Yao Wang, Tzu-Hsin Li, Bo-Xiang Liao, Chung-Hsuan Hsiao, Li-Han Chang, Ming-Shian Tsai, Tzu-Hung Chuang, Der-Hsin Wei
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Abstract

Antiferromagnetic (AFM) thin films have been proposed as a promising material for manipulating perpendicular magnetic anisotropy (PMA) in ferromagnetic (FM) thin films. In this work, a series of epitaxially grown AFM/Co/Fe structures are investigated, in which the AFM layer is composed of fcc ${\mathrm{Fe}}_{50}{\mathrm{Mn}}_{50}$ and vertically expanded face-centered-tetragonal Mn films with distinct three-dimensional quadratic-type and two-dimensional layered spin structures, respectively. Our findings demonstrate that an individual AFM film in the composite AFM layer not only can enhance the long-range AFM ordering in its adjacent AFM neighbor but also can exert control over the neighbor's AFM spin structure; these modulation mechanisms subsequently induce PMA in an adjacent FM film. The research sheds light on the AFM proximity effects within the AFM composite layers and their profound influence on PMA induction in adjacent FM layers, offering essential insights for improving control over PMA with AFM layers.
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反铁磁复合薄膜中的磁邻近效应:引发垂直磁各向异性的作用
反铁磁(AFM)薄膜被认为是控制铁磁(FM)薄膜中垂直磁各向异性(PMA)的一种有前途的材料。本文研究了一系列外延生长的AFM/Co/Fe结构,其中AFM层由fcc ${\ mathm {Fe}}_{50}}{\ mathm {Mn}}_{50}$和垂直扩展的面心四边形Mn膜组成,分别具有不同的三维二次型和二维层状自旋结构。研究结果表明,复合AFM层中的单个AFM膜不仅可以提高其相邻AFM邻居的远程AFM有序度,而且可以控制邻居的AFM自旋结构;这些调制机制随后在相邻的调频膜中诱导PMA。该研究揭示了AFM复合层内的AFM接近效应及其对相邻FM层中PMA诱导的深刻影响,为改进AFM层对PMA的控制提供了重要的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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