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The critical Barkhausen avalanches in thin random-field ferromagnets with an open boundary

机译:带有开放边界的薄随机磁场铁磁体中的临界巴克豪森雪崩

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摘要

The interplay between the critical fluctuations and the sample geometry is investigated numerically using thin random-field ferromagnets exhibiting the field-driven magnetisation reversal on the hysteresis loop. The system is studied along the theoretical critical line in the plane of random-field disorder and thickness. The thickness is varied to consider samples of various geometry between a two-dimensional plane and a complete three-dimensional lattice with an open boundary in the direction of the growing thickness. We perform a multi-fractal analysis of the Barkhausen noise signals and scaling of the critical avalanches of the domain wall motion. Our results reveal that, for sufficiently small thickness, the sample geometry profoundly affects the dynamics by modifying the spectral segments that represent small fluctuations and promoting the time-scale dependent multi-fractality. Meanwhile, the avalanche distributions display two distinct power-law regions, in contrast to those in the two-dimensional limit, and the average avalanche shapes are asymmetric. With increasing thickness, the scaling characteristics and the multi-fractal spectrum in thicker samples gradually approach the hysteresis loop criticality in three-dimensional systems. Thin ferromagnetic films are growing in importance technologically, and our results illustrate some new features of the domain wall dynamics induced by magnetisation reversal in these systems.
机译:临界波动和样本几何形状之间的相互作用是使用薄的随机场铁磁体进行数值研究的,该磁体在磁滞回线上表现出场驱动的磁化反转。在随机场无序和厚度平面内,沿着理论临界线研究该系统。改变厚度以考虑在二维平面和完整的三维晶格之间具有各种几何形状的样本,其中在增长的厚度方向上具有开放边界。我们对Barkhausen噪声信号进行了多重分形分析,并对畴壁运动的关键雪崩进行了缩放。我们的结果表明,对于足够小的厚度,样品几何形状会通过修改代表小波动的光谱段并促进时标相关的多重分形来深刻影响动力学。同时,与二维极限的雪崩分布相比,雪崩分布显示两个不同的幂律区域,并且平均雪崩形状是不对称的。随着厚度的增加,较厚样本中的缩放特性和多重分形谱逐渐接近三维系统中的磁滞回线临界值。铁磁薄膜在技术上的重要性正日益提高,我们的结果证明了在这些系统中由磁化反转引起的畴壁动力学的一些新特征。

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