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Micromagnetic study of domain wall dynamics in bit-patterned nanodots

机译:位图纳米点中畴壁动力学的微磁研究

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摘要

Domain wall dynamics in magnetic nanodots is critical to the understanding of the magnetization reversal mechanisms in bit-patterned arrays, the issues of writeablility, data rate maximization, and bit stability. In this work, micromagnetic simulations were carried out to investigate the dynamics of domain walls in disk-shaped nanostructures with large built-in perpendicular anisotropy. Due to the strong demagnetizing effect, the domain wall motion falls into the supercritical regime. A 90° phase shift of the wall velocity is developed due to the finite thicknesses. The mean value of the wall velocity increases as the domain wall propagates away from the center. This induced asymmetry causes the frequency of the wall oscillations to be halved. At large diameters, the wall acceleration deceases and the periodicity is lost. The in-plane magnetization configuration shows that multiple spin wave modes are present. The absence of the coherency in the magnetization orientations causes phase canceling. The out-of-phase motion of neighboring segments reduces the wall acceleration.
机译:磁性纳米点的畴壁动力学对于理解位模式阵列中的磁化反转机制,可写性,数据速率最大化和位稳定性等问题至关重要。在这项工作中,进行了微磁模拟,以研究具有大的内置垂直各向异性的盘状纳米结构中畴壁的动力学。由于强的消磁作用,畴壁运动落入超临界状态。由于有限的厚度,壁速度产生了90°的相移。随着畴壁远离中心传播,壁速度的平均值增加。这种不对称导致壁振动的频率减半。在大直径处,壁加速度降低并且失去周期性。平面内磁化配置显示存在多个自旋波模式。在磁化取向中不存在相干性导致相位抵消。相邻节段的异相运动会降低壁加速度。

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