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首页> 外文期刊>Physical review, B >Helicity of magnetic vortices and skyrmions in soft ferromagnetic nanodots and films biased by stray radial fields
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Helicity of magnetic vortices and skyrmions in soft ferromagnetic nanodots and films biased by stray radial fields

机译:磁涡旋螺旋和软铁磁纳米纸和薄膜的冰液,由杂散径向偏压偏压

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摘要

Static magnetization configurations of thin soft ferromagnetic films and nanodots, coupled to a hard antidot matrix with out-of-plane magnetization, are studied by micromagnetic simulations and analytical calculations. When the antidot matrix produces sufficient stray fields, having radial symmetry, these nanostructures support the formation of topologically nontrivial magnetic configurations-vortices and skyrmions in nanodots and films, respectively. It is demonstrated that the studied nanostructure reveals an additional degree of freedom-the helicity of the vortex or skyrmion-which can be tuned on demand by a variation of the material parameters and geometry. The variation of helicity. is not abrupt. In addition to Neel-like (radial) vortices and skyrmions (gamma = 0, pi), it is possible to achieve unconventional configurations with an intermediate helicity. gamma not equal 0, +/-pi/2, pi, which transform to common Bloch-like configurations (gamma = +/-pi/2) in the limit of negligible stray fields from the matrix. We present an analytical model, which allows us to calculate the stability region of pure Neel-like states, outside which unconventional magnetization states with intermediate helicity are realized.
机译:通过微磁性模拟和分析计算,研究了薄软铁磁膜和纳米膜的静磁化构型与具有外平面外磁化的硬质防陶器矩阵。当防虫矩阵产生足够的杂散场时,具有径向对称性,这些纳米结构分别支撑在纳米蛋白和薄膜中形成拓扑非磁力配置 - 涡旋和臭氧的形成。结果证明,研究的纳米结构揭示了额外的自由度 - 涡旋或斯基尔的螺旋 - 这可以通过材料参数和几何形状的变化来调谐。螺旋的变化。不突然。除了诸如诸如径向(径向)涡流和臭氧(Gamma = 0,Pi)之外,还可以通过中间螺旋来实现非传统配置。 Gamma不等于0,+/- PI / 2,PI,其转换为常见的Bloch样配置(Gamma = +/- Pi / 2),以矩阵的可忽略杂散场的限制。我们介绍了一个分析模型,该模型允许我们计算纯Neel的状态的稳定性区域,在外部实现具有中间螺旋的非传统磁化状态。

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