论文标题
连续成核切换由自旋轨道扭矩驱动
Continuous nucleation switching driven by spin-orbit torques
论文作者
论文摘要
由自旋轨道扭矩(SOT)驱动的连续开关是以自旋形式的方式实现神经形态计算的。在这里,我们应用了聚焦的离子束(FIB),以垂直磁各向异性(PMA)的PT/CO/MGO带中有选择性照明图案的区域,使照明区域软化,并通过SOT驱动的成核过程实现连续切换。发现大型的平面场是减少成核屏障,增加成核势垒的数量和中间状态的好处,并最终使切换曲线变平。我们提出了一个现象学模型,用于描述磁化的当前依赖性以及成核域数量在应用电流和磁场上的依赖性。因此,这项研究可以促进SOT设备的诞生,这些设备在神经形态计算体系结构中有希望。
Continuous switching driven by spin-orbit torque (SOT) is preferred to realize neuromorphic computing in a spintronic manner. Here we have applied focused ion beam (FIB) to selectively illuminate patterned regions in a Pt/Co/MgO strip with perpendicular magnetic anisotropy (PMA), soften the illuminated areas and realize the continuous switching by a SOT-driven nucleation process. It is found that a large in-plane field is a benefit to reduce the nucleation barrier, increase the number of nucleated domains and intermediate states during the switching progress, and finally flatten the switching curve. We proposed a phenomenological model for descripting the current dependence of magnetization and the dependence of the number of nucleation domains on the applied current and magnetic field. This study can thus promote the birth of SOT devices, which are promising in neuromorphic computing architectures.