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Critical nucleation size of vortex core for domain wall transformation in soft magnetic thin film nanostrips

机译:软磁薄膜纳米带中畴壁转变的涡旋核临界成核尺寸

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摘要

We have studied the onset process of dynamic transformation of the internal structure of a moving domain wall (DW) in soft magnetic thin film nanostrips, driven by applied magnetic fields larger than the Walker field strength, Hw. It was found that one of the edge-soliton cores of a transverse wall (TW)-type DW should reach a critical nucleation size of the vortex core by moving inward beyond a critical deviation, Δ ycri, in the transverse (width) direction, in order for the transformation from a TW to a vortex wall (VW) (or antivortex wall, AVW) to occur. The value of Δ ycri is estimated to be close to the full width at half maximum of the out-of-plane magnetizations of a stabilized vortex core (or antivortex core). Upon completion of the nucleation of the vortex (antivortex) core, the VW (AVW) is stabilized, accompanying its characteristic gyrotropic motion in a potential well (hill) of a given nanostrip. Field strengths exceeding the Hw, the onset field of DW velocity breakdown, are not sufficient but necessary conditions for the dynamic DW transformations.
机译:我们已经研究了由大于沃克场强Hw的施加磁场驱动的软磁薄膜纳米带中移动畴壁(DW)内部结构动态转变的开始过程。已发现,横向壁(TW)型DW的边缘孤子芯之一应通过在横向(宽度)方向上向内移动超过临界偏差Δycri,从而达到涡流芯的临界成核尺寸,为了实现从TW到涡旋壁(VW)(或反涡旋壁,AVW)的转换。估计Δycri的值接近稳定涡旋芯(或反涡旋芯)的平面外磁化强度的一半处的全宽度。涡旋(反涡旋)核的成核完成后,VW(AVW)稳定,伴随其在给定纳米带的潜在势阱(坡度)中的回旋运动。超过Hw的场强(DW速度击穿的起始场)是不够的,但是动态DW转换的必要条件。

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