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Domain structure of ultrathin ferromagnetic elements in the presence of Dzyaloshinskii–Moriya interaction

机译:Dzyaloshinskii-Moriya相互作用下超薄铁磁元件的畴结构

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摘要

Recent advances in nanofabrication make it possible to produce multilayer nanostructures composed of ultrathin film materials with thickness down to a few monolayers of atoms and lateral extent of several tens of nanometers. At these scales, ferromagnetic materials begin to exhibit unusual properties, such as perpendicular magnetocrystalline anisotropy and antisymmetric exchange, also referred to as Dzyaloshinskii–Moriya interaction (DMI), because of the increased importance of interfacial effects. The presence of surface DMI has been demonstrated to fundamentally alter the structure of domain walls. Here we use the micromagnetic modelling framework to analyse the existence and structure of chiral domain walls, viewed as minimizers of a suitable micromagnetic energy functional. We explicitly construct the minimizers in the one-dimensional setting, both for the interior and edge walls, for a broad range of parameters. We then use the methods of Γ-convergence to analyse the asymptotics of the two-dimensional magnetization patterns in samples of large spatial extent in the presence of weak applied magnetic fields.
机译:纳米制造的最新进展使得可以生产由超薄薄膜材料组成的多层纳米结构,其厚度低至几个原子的单分子层,横向范围为几十纳米。在这些尺度上,由于界面效应的重要性不断提高,铁磁材料开始表现出非同寻常的特性,例如垂直磁晶各向异性和反对称交换,也称为Dzyaloshinskii-Moriya相互作用(DMI)。已经证明表面DMI的存在从根本上改变了畴壁的结构。在这里,我们使用微磁建模框架来分析手性畴壁的存在和结构,它们被认为是合适的微磁能函数的最小化器。我们在一维设置中显式构造了最小化器,无论是内部壁还是边缘壁,都具有广泛的参数范围。然后,我们使用Γ收敛的方法来分析在存在弱施加磁场的情况下大空间范围内的样本中二维磁化模式的渐近性。

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