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Field- and Current-Induced Domain Wall Motion in Tb/Co Multilayers in the Presence of Spin-Orbit Coupling-Induced Torques

机译:自旋轨道耦合产生的转矩中Tb / Co多层中的场和电流引起的畴壁运动

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摘要

We have studied the field- and current-induced domain wall (DW) motion in perpendicularly magnetized Tb/Co multilayer wires with asymmetric interface structures. We found that both up/down and down/up walls of a domain move at the same velocity. In the current-induced case, the DWs were moved along the current flow, not electron flow. This can be attributed to spin-orbit torques induced by structural inversion asymmetry (SIA). In addition, the DW velocity was changed by inserting ultrathin Pt interlayers into the wire stack. These results suggest that the SIA of the wire is tunable by changing layered structures.
机译:我们已经研究了具有不对称界面结构的垂直磁化的Tb / Co多层导线中场和电流引起的畴壁(DW)运动。我们发现域的上/下和下/上壁都以相同的速度移动。在电流感应的情况下,DW沿电流而不是电子流移动。这可以归因于由结构反演不对称(SIA)引起的自旋轨道转矩。另外,通过将超薄的Pt中间层插入到线束中来改变DW速度。这些结果表明,通过改变分层结构,可调整电线的SIA。

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