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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Universal absence of Walker breakdown and linear current-velocity relation via spin-orbit torque in coupled and single domain wall motion
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Universal absence of Walker breakdown and linear current-velocity relation via spin-orbit torque in coupled and single domain wall motion

机译:在耦合和单畴壁运动中普遍不存在通过自旋轨道转矩的沃克击穿和线性电流-速度关系

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摘要

We consider theoretically domain wall motion driven by spin-orbit and spin Hall torques. We find that it is possible to achieve universal absence of Walker breakdown for all spin-orbit torques using experimentally relevant spin-orbit coupling strengths. For spin-orbit torques other than the pure Rashba spin-orbit torque, this gives a linear current-velocity relation instead of a saturation of the velocity at high current densities. The effect is very robust and is found in both soft and hard magnetic materials, as well as in the presence of the Dzyaloshinskii-Moriya interaction and in coupled domain walls in synthetic antiferromagnets, where it leads to very high domain wall velocities. Moreover, recent experiments have demonstrated that the switching of a synthetic antiferromagnet does not obey the usual spin Hall angle dependence, but that domain expansion and contraction can be selectively controlled toggling only the applied in-plane magnetic field magnitude and not its sign. We show that the combination of spin Hall torques and interlayer exchange coupling produces the necessary relative velocities for this switching to occur.
机译:从理论上讲,我们考虑了由自旋轨道和自旋霍尔转矩驱动的畴壁运动。我们发现,使用实验相关的自旋轨道耦合强度,可以实现所有自旋轨道转矩普遍不存在沃克击穿的情况。对于除纯Rashba自旋轨道转矩以外的自旋轨道转矩,这给出了线性电流-速度关系,而不是高电流密度下的速度饱和。这种效果非常强大,并且在软磁性和硬磁性材料中以及在存在Dzyaloshinskii-Moriya相互作用以及合成反铁磁体中的耦合畴壁中都可以发现,从而导致极高的畴壁速度。此外,最近的实验表明,合成反铁磁体的开关不遵循通常的自旋霍尔角依赖性,但是可以选择性地控制畴的扩展和收缩,仅切换施加的面内磁场强度而不切换其符号。我们表明,自旋霍尔转矩和层间交换耦合的组合产生了发生这种切换所必需的相对速度。

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