异质结
材料科学
离子键合
磁电阻
电流(流体)
氧气
离子
化学物理
光电子学
纳米技术
化学
磁场
物理
热力学
有机化学
量子力学
作者
Taiyu An,Bin Cui,Mingfang Zhang,Fufu Liu,Shaobo Cheng,Kuikui Zhang,Xue Ren,Liang Liu,Bin Cheng,Changjun Jiang,Jifan Hu
标识
DOI:10.1002/adma.202300858
摘要
The orbital Hall effect and the interfacial Rashba effect provide new approaches to generate orbital current and spin-orbit torque (SOT) efficiently without the use of heavy metals. However, achieving efficient dynamic control of orbital current and SOT in light metal oxides has proven challenging. In this study, it is demonstrated that a sizable magnetoresistance effect related to orbital current and SOT can be observed in Ni81 Fe19 /CuOx /TaN heterostructures with various CuOx oxidization concentrations. The ionic liquid gating induces the migration of oxygen ions, which modulates the oxygen concentration at the Ni81 Fe19 /CuOx interface, leading to reversible manipulation of the magnetoresistance effect and SOT. The existence of a thick TaN capping layer allows for sophisticated internal oxygen ion reconstruction in the CuOx layer, rather than conventional external ion exchange. These results provide a method for the reversible and dynamic manipulation of the orbital current and SOT generation efficiency, thereby advancing the development of spin-orbitronic devices through ionic engineering.
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