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Micromagnetics of periodic stripe domains

机译:周期性条带域的微磁学

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The periodic stripe domains of magnetic material whose easy axis is perpendicular to the film thickness may have boundary layer behavior not only in the wall but also near the film surfaces. This behavior is especially pronounced when the material characteristic length is much less than the film thickness. By means of direct minimization from a variational principle, the magnetization in the periodic stripe domains is determined numerically using a mesh scheme, in which the boundary layer behaviors in the wall and near the film surfaces are adequately represented. The results confirmed the boundary layer behavior a posteriori. The stripe width is, in general, dependent upon Q = K/2πM2. However, the dependence is quite insensitive when the material characteristic length/film thickness ratio is less than 0.1. The results were compared with those of the theory based on the Landau‐Lifshitz wall energy density concept due to Málek and Kambersky. The comparison shows that the magnetostatic energy density is substantially lower in contrast to the slight increase in the wall energy density defined as the sum of anisotropy and exchange energy densities.
机译:易轴垂直于薄膜厚度的磁性材料的周期性条带畴不仅在壁中而且在薄膜表面附近都可能具有边界层行为。当材料特征长度远小于薄膜厚度时,这种行为尤其明显。通过基于变分原理的直接最小化,使用网格方案在​​数值上确定周期性条带区域中的磁化强度,其中可以充分表示壁中和膜表面附近的边界层行为。结果证实了边界层行为的后验。条带宽度通常取决于Q = K /2πM2。然而,当材料特征长度/膜厚度比小于0.1时,依赖性非常不敏感。将结果与基于Málek和Kambersky的Landau-Lifshitz壁能量密度概念的理论进行了比较。比较表明,静磁场能量密度与壁能量密度的轻微增加相反,而壁能量密度的微小增加被定义为各向异性和交换能量密度的总和。

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    《Journal of Applied Physics》 |1981年第5期|P.3130-3134|共5页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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