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Relationship between Nonadiabaticity and Damping in Permalloy Studied by Current Induced Spin Structure Transformations

机译:电流诱导自旋结构转变研究坡莫合金非绝热与阻尼的关系

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摘要

By direct imaging we determine spin structure changes in Permalloy wires and disks due to spin transfer torque as well as the critical current densities for different domain wall types. Periodic domain wall transformations from transverse to vortex walls and vice versa are observed, and the transformation mechanism occurs by vortex core displacement perpendicular to the wire. The results imply that the nonadiabaticity parameter β does not equal the damping a, in agreement with recent theoretical predictions. The vortex core motion perpendicular to the current is further studied in disks revealing that the displacement in opposite directions can be attributed to different polarities of the vortex core.
机译:通过直接成像,我们可以确定由于自旋传递转矩以及不同畴壁类型的临界电流密度而导致的坡莫合金丝和磁盘的自旋结构变化。观察到周期性的畴壁从横向壁到涡旋壁的转变,反之亦然,并且转变机理是通过垂直于导线的涡旋芯位移而发生的。结果表明,与最近的理论预测一致,非绝热参数β不等于阻尼a。在磁盘中进一步研究了垂直于电流的涡流芯运动,结果表明,相反方向的位移可归因于涡流芯的极性不同。

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