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One-dimensional in-plane edge domain walls in ultrathin ferromagnetic films

机译:超薄铁磁膜中的一维面内边缘域壁

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摘要

We study existence and properties of 1D edge domain walls in ultrathin ferromagnetic films with uniaxial in-plane magnetic anisotropy. In these materials, the magnetization vector is constrained to lie entirely in the film plane, with the preferred directions dictated by the magnetocrystalline easy axis. We consider magnetization profiles in the vicinity of a straight film edge oriented at an arbitrary angle with respect to the easy axis. To minimize the micromagnetic energy, these profiles form transition layers in which the magnetization vector rotates away from the direction of the easy axis to align with the film edge. We prove existence of edge domain walls as minimizers of the appropriate 1D micromagnetic energy functional and show that they are classical solutions of the associated Euler-Lagrange equation with a Dirichlet boundary condition at the edge. We also perform a numerical study of these 1D domain walls and uncover further properties of these domain wall profiles.
机译:用单轴内磁各向异性研究超轴铁磁膜中1D边缘域壁的存在性和性质。 在这些材料中,磁化矢量被限制为完全位于膜平面中,优选方向由磁镀型易轴线决定。 我们考虑相对于容易轴线以任意角度定向的直膜边缘附近的磁化分布。 为了最小化微磁能量,这些轮廓形成转换层,其中磁化矢量旋转远离易轴的方向以与膜边缘对准。 我们证明了边缘域壁的存在,如适当的1D微磁能量功能的最小值,并且显示它们是相关的Euler-Lagrange方程的经典解,在边缘处具有Dirichlet边界条件。 我们还对这些1D畴壁进行了数值研究,并揭示了这些畴壁型材的进一步性质。

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