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A reduced model for domain walls in soft ferromagnetic films at the cross-over from symmetric to asymmetric wall types

机译:软铁磁薄膜中从对称型到非对称型的跨界壁的简化模型

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摘要

We study the Landau-Lifshitz model for the energy of multi-scale transition layers—called "domain walls"—in soft ferromagnetic films. Domain walls separate domains of constant magnetization vectors m_a~± ∈ S~2 that differ by an angle 2α. Assuming translation invariance tangential to the wall, our main result is the rigorous derivation of a reduced model for the energy of the optimal transition layer, which in a certain parameter regime confirms the experimental, numerical and physical predictions: The minimal energy splits into a contribution from an asymmetric, divergence-free core which performs a partial rotation in S~2 by an angle 20, and a contribution from two symmetric, logarithmically decaying tails, each of which completes the rotation from the angle θ to a in S~1. The angle θ is chosen such that the total energy is minimal. The contribution from the symmetric tails is known explicitly, while the contribution from the asymmetric core is analyzed in [7]. Our reduced model is the starting point for the analysis of a bifurcation phenomenon from symmetric to asymmetric domain walls. Moreover, it allows for capturing asymmetric domain walls including their extended tails (which were previously inaccessible to brute-force numerical simulation).
机译:我们研究了软铁磁膜中多尺度过渡层(称为“畴壁”)的能量的Landau-Lifshitz模型。畴壁将恒定磁化矢量m_a〜±∈S〜2的畴分开,它们之间的夹角为2α。假设与壁面成直角的平移不变性,我们的主要结果是针对最佳过渡层能量的简化模型的严格推导,该模型在一定的参数范围内证实了实验,数值和物理预测:最小能量分裂成贡献来自一个不对称,无散度的磁芯,该磁芯在S〜2中执行部分旋转,旋转角度为20,并且由两个对称的,对数衰减的尾部贡献,每个尾部完成从S-1中的角度θ到a的旋转。选择角度θ以使总能量最小。对称尾部的贡献是明确已知的,而非对称核心的贡献则在[7]中进行了分析。我们的简化模型是分析从对称畴壁到非对称畴壁的分叉现象的起点。此外,它还可以捕获不对称的畴壁,包括其延伸的尾巴(以前是蛮力数值模拟无法访问的)。

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