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Observation of asymmetry in domain wall velocity under transverse magnetic field

机译:横向磁场作用下畴壁速度不对称现象的观察

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The dynamics of a magnetic domain wall (DW) under a transverse magnetic fieldHy are investigated in two-dimensional (2D) Co/Ni microstrips, where an interfacial Dzyaloshinskii-Moriya interaction (DMI) exists with DMI vector D lying in +y direction. The DW velocity exhibits asymmetric behavior for ±Hy; that is, the DW velocity becomes faster when Hy is applied antiparallel to D. The key experimental results are reproduced in a 2D micromagnetic simulation, which reveals that the interfacial DMI suppresses the periodic change of the average DW angle φ even above the Walker breakdown and that Hy changes φ, resulting in a velocity asymmetry. This suggests that the 2D DW motion, despite its microscopic complexity, simply depends on the average angle of the DW and thus can be described using a one-dimensional soliton model. These findings provide insight into the magnetic DW dynamics in 2D systems, which are important for emerging spin-orbitronic applications.
机译:在二维(2D)Co / Ni微带中研究了横向磁场Hy下磁畴壁(DW)的动力学,其中存在界面Dzyaloshinskii-Moriya相互作用(DMI),且DMI向量D位于+ y方向。 DW速度表现出±Hy的不对称行为;也就是说,当Hy与D反平行施加时,DW速度变得更快。关键的实验结果在二维微磁模拟中得以再现,这表明界面DMI甚至在Walker击穿和击穿以上时也抑制了平均DW角φ的周期性变化。 Hy改变φ,导致速度不对称。这表明2D DW运动尽管微观复杂,但仅取决于DW的平均角度,因此可以使用一维孤子模型来描述。这些发现提供了对2D系统中磁性DW动力学的洞察力,这对于新兴的自旋或双电子应用很重要。

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