Liang Yuhan, Yi Di, Nan Tianxiang, Liu Shengsheng, Zhao Le, Zhang Yujun, Chen Hetian, Xu Teng, Dai Minyi, Hu Jia-Mian, Xu Ben, Shi Ji, Jiang Wanjun, Yu Rong, Lin Yuan-Hua
School of Materials Science and Engineering, Tsinghua University, Beijing, China.
School of Integrated Circuits and Beijing National Research Center for Information Science and Technology (BNRist), Tsinghua University, Beijing, China.
Nat Commun. 2023 Sep 6;14(1):5458. doi: 10.1038/s41467-023-41163-3.
Current induced spin-orbit torque (SOT) holds great promise for next generation magnetic-memory technology. Field-free SOT switching of perpendicular magnetization requires the breaking of in-plane symmetry, which can be artificially introduced by external magnetic field, exchange coupling or device asymmetry. Recently it has been shown that the exploitation of inherent crystal symmetry offers a simple and potentially efficient route towards field-free switching. However, applying this approach to the benchmark SOT materials such as ferromagnets and heavy metals is challenging. Here, we present a strategy to break the in-plane symmetry of Pt/Co heterostructures by designing the orientation of Burgers vectors of dislocations. We show that the lattice of Pt/Co is tilted by about 1.2° when the Burgers vector has an out-of-plane component. Consequently, a tilted magnetic easy axis is induced and can be tuned from nearly in-plane to out-of-plane, enabling the field-free SOT switching of perpendicular magnetization components at room temperature with a relatively low current density (~10A/m) and excellent stability (> 10 cycles). This strategy is expected to be applicable to engineer a wide range of symmetry-related functionalities for future electronic and magnetic devices.
电流感应自旋轨道矩(SOT)在下一代磁存储技术方面极具潜力。垂直磁化的无磁场SOT开关需要打破面内对称性,这可以通过外部磁场、交换耦合或器件不对称性人为引入。最近研究表明,利用固有晶体对称性为实现无磁场开关提供了一条简单且可能高效的途径。然而,将这种方法应用于诸如铁磁体和重金属等基准SOT材料具有挑战性。在此,我们提出一种通过设计位错的柏氏矢量方向来打破Pt/Co异质结构面内对称性的策略。我们表明,当柏氏矢量具有面外分量时,Pt/Co的晶格倾斜约1.2°。因此,会诱导出一个倾斜的易磁轴,并且可以从近面内调整到面外,从而在室温下以相对较低的电流密度(~10A/m)和出色的稳定性(>10个循环)实现垂直磁化分量的无磁场SOT开关。预计该策略可应用于为未来的电子和磁性器件设计广泛的与对称性相关的功能。