材料科学
超晶格
磁化
凝聚态物理
氧化物
领域(数学)
工程物理
磁场
光电子学
冶金
数学
量子力学
物理
工程类
纯数学
作者
Dongxing Zheng,Yue‐Wen Fang,Yan Wen,Kepeng Song,Yan Li,Bin Fang,Chenhui Zhang,Aitian Chen,Chen Liu,Hanin Algaidi,Meng Tang,Yinchang Ma,Peng Li,Xixiang Zhang
标识
DOI:10.1002/adfm.202312746
摘要
Abstract Spin‐orbit torque resulting from non‐magnetic materials with strong spin‐orbit coupling enables electrically controlled magnetization switching, offering potential applications in ultralow‐power memory and logic devices. However, such switching of perpendicular magnetization usually requires an in‐plane magnetic field along the applied current direction, which limits its use. To address this challenge, an all‐oxide superlattice is designed and fabricated that show both the perpendicular magneto‐crystalline anisotropy and in‐plane magnetic anisotropies induced by interfacial engineering. The results demonstrate that the coexistence of perpendicular and in plane magnetic anisotropy breaks the symmetry and thus enables the pure electrical switching of perpendicular magnetization.
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