凝聚态物理
声表面波
异质结
磁畴壁(磁性)
材料科学
成核
电流密度
声波
磁化
磁滞
磁场
物理
声学
量子力学
热力学
作者
Yang Cao,Xiaofei Bian,Ze Yan,Li Xi,Na Lei,Liang Qiao,Mingsu Si,Jiangwei Cao,Dezheng Yang,Ding‐Jiang Xue
摘要
Current-induced spin–orbit torque (SOT) allows for highly efficient control of magnetization for the magnetic memory and the logic application, but its high critical current density Jc limits its applications. Here, we report that the surface acoustic wave (SAW) presents a promising approach for reducing Jc in Pt/Co/Ta heterostructures with perpendicular anisotropy. By the second harmonic Hall measurements, we find that the damping-like SOT effective field is almost the same with or without SAW, implying that the reduction of Jc does not originate from the enhancement of the SOT. However, the current-induced domain wall velocity v under SAW is greatly enhanced. By fitting with the creep law under SAW, we find that lnv is linear with SAW power (P), which reveals that the effective pinning barrier is reduced linearly with increasing P. This feature can be well described by the time average of the periodically accumulated nucleation probability under SAW. The results shed light on the application of SAW-assisted SOT devices for low consumption storage.
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