Dzyaloshinskii-Moriya相互作用对Pt/Co/Ir/Co/Pr合成铁磁体磁态直接和反向跃迁的影响

A. Talantsev, E. Kunitsyna, R. Morgunov
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摘要

本文研究了厚度为1.1 nm、厚度为0.6 ~ 1.0 nm的Pt/Co/Ir/Co/Pr合成铁磁体(SF)的畴间跃迁结构。磁光克尔效应(MOKE)技术揭示了薄层厚度的变化会引起畴结构和磁化反转机制的显著变化。磁化反转包括铁磁层磁化的相干旋转、磁核的产生、畴壁(DW)的扩展以及与带状畴相似的区域的发展,这取决于薄层的厚度。在薄层厚度分别为0.8 nm和1.0 nm的样品中,观察到平行磁化和反平行磁化的SF磁态之间的正向和反向跃迁不相等。这些态之间跃迁的不对称性表现在涨落场和反转磁化核形状的差异上,从而导致相应的正向和反向跃迁。我们提出了基于Dzyaloshinskii-Moriya相互作用不对称性的简单模型。该模型解释了由于自旋进入DW的方向与外场有关,DW能量的增加/减少导致成核和畴壁传播之间的竞争。
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The effect of Dzyaloshinskii–Moriya interaction on direct and backward transition between magnetic states of Pt/Co/Ir/Co/Pr synthetic ferrimagnet
In this paper, we present the study of domain structure accompanying interstate transitions in Pt/Co/Ir/Co/Pr synthetic ferrimagnet (SF) of 1.1 nm thick and 0.6 – 1.0 nm thin ferromagnetic Co layers. Variation in the thickness of the thin layer causes noticeable changes in the domain structure and mechanism of magnetization reversal revealed by MOKE (Magneto-Optical Kerr Effect) technique. Magnetization reversal includes coherent rotation of magnetization of the ferromagnetic layers, generation of magnetic nuclei, spreading of domain walls (DW), and development of areas similar with strip domains, dependently on thickness of the thin layer. Inequivalence of the direct and backward transitions between magnetic states of SF with parallel and antiparallel magnetizations was observed in sample with thin layer thicknesses 0.8 nm and 1.0 nm. Asymmetry of the transition between these states is expressed in difference fluctuation fields and shapes of reversal magnetization nucleus contributing to the correspondent forward and backward transitions. We proposed simple model based on asymmetry of Dzyaloshinskii–Moriya interaction. This model explains competition between nucleation and domain wall propagation due to increase/decrease of the DW energy dependently on direction of the spin rotation into the DW in respect to external field.
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