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Micromagnetic analysis of current-induced domain wall motion in a bilayer nanowire with synthetic antiferromagnetic coupling

机译:具有合成反铁磁耦合的双层纳米线中电流诱导的畴壁运动的微磁分析

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We demonstrate current-induced domain wall motion in bilayer nanowire with synthetic antiferromagnetic(SAF) coupling by modeling two body problems for motion equations of domain wall. The influence of interlayer exchange coupling and magnetostatic interactions on current-induced domain wall motion in SAFnanowires was also investigated. By assuming the rigid wall model for translational motion, the interlayer exchange coupling and the magnetostatic interaction between walls and domains in SAFnanowires enhances domain wall speed without any spin-orbit-torque. The enhancement of domain wall speed was discussed by energy distribution as a function of wall angle configuration in bilayer nanowires.
机译:我们通过对畴壁运动方程的两个主体问题进行建模,证明了具有合成反铁磁(SAF)耦合的双层纳米线中电流诱导的畴壁运动。还研究了层间交换耦合和静磁相互作用对SAF纳米线中电流诱导的畴壁运动的影响。通过假设用于平移运动的刚性壁模型,SAFnanowires的壁和畴之间的层间交换耦合和静磁相互作用提高了畴壁速度,而没有任何自旋轨道扭矩。通过将能量分布作为双层纳米线中壁角构型的函数来讨论畴壁速度的提高。

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