自旋电子学
凝聚态物理
铁磁性
自旋等离子体光子学
材料科学
自旋(空气动力学)
自旋霍尔效应
自旋极化
反铁磁性
自旋工程
旋转泵
旋转阀
异质结
磁场
磁化
物理
电子
量子力学
热力学
作者
Hang Xie,Zhiqiang Mu,Yuxin Si,Jiaqi Wang,X. R. Wang,Yihong Wu
标识
DOI:10.1002/adma.202408340
摘要
Abstract The ability to electrically manipulate spin states in magnetic materials is essential for the advancement of energy‐efficient spintronic device, which is typically achieved in systems composed of a spin source and a magnetic target, where the magnetic state of the target is altered by a charge current. While theories suggest that ferromagnets could function as more versatile spin sources, direct experimental studies involving only the spin source and target layers have been lacking. Here electrical manipulation of spin states in noncolinear antiferromagnet Mn 3 Sn using ferromagnets (Ni, Fe, NiFe, CoFeB) as the spin sources is reported. Both field‐free switching and switching with an assistive field are achieved in Mn 3 Sn/ferromagnet bilayers, where the switching polarity correlates with the sign of anomalous Hall effect of the ferromagnets. The experimental findings can be accounted for by the presence of spin currents arising from spin‐dependent scattering within the ferromagnets. This finding provides valuable insights into the underlying mechanisms of spin‐conversion in ferromagnets, offering an alternative spin source for novel technological applications.
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