论文标题

抗磁性耦合双晶格系统中的域壁动力学

Domain wall dynamics in antiferromagnetically-coupled double-lattice systems

论文作者

Haltz, Eloi, Krishnia, Sachin, Berges, Léo, Mougin, Alexandra, Sampaio, João

论文摘要

在铁磁材料中,使用众所周知的Q-ϕ分析模型成功地描述了磁场或电流下磁性域壁(DWS)的丰富动力学。我们在这里证明,这种简单的一维模型可以使用有效参数,可用于多种形式的材料,例如铁磁合金或合成反铁磁铁(SAF),并且与双重晶格微磁模拟非常吻合。我们获得了DW速度和内部进动角的分析定律,这是不同驱动力(磁场,自旋传递和自旋轨道扭矩)的净磁化函数,以及铁磁合金和SAF中的不同传播方案。该模型预测,当净磁化或系统的净角动量消失时,几个独特的动力学特征出现在磁性和角度补偿点附近或角度补偿点,我们讨论了其中一些报告的实验观测值。使用较高的自由度分析模型,该模型解释了公共间扭曲的扭曲,我们为这些畸变提供了与微磁模拟一致的扭曲的分析表达式。该模型表明,DW速度和进动率独立于公共间交换耦合的强度,并证明使用更简单的有效参数模型是合理的。

In ferromagnetic materials, the rich dynamics of magnetic domain walls (DWs) under magnetic field or current have been successfully described using the well-known q-ϕ analytical model. We demonstrate here that this simple unidimensional model holds for multiple-sublattice materials such as ferrimagnetic alloys or synthetic antiferromagnets (SAF) by using effective parameters, and is in excellent agreement with double-lattice micromagnetic simulations. We obtain analytical laws for the DW velocity and internal precession angle as a function of net magnetisation for different driving forces (magnetic field, spin transfer and spin-orbit torques) and different propagation regimes in ferrimagnetic alloys and SAFs. The model predicts that several distinctive dynamical features occur near or at the magnetic and the angular compensation points when the net magnetization or the net angular momentum of the system vanishes, and we discuss the experimental observations that have been reported for some of them. Using a higher degree-of-freedom analytical model that accounts for inter-sublattice distortions, we give analytical expressions for these distortions that agree with the micromagnetic simulations. This model shows that the DW velocity and precession rate are independent of the strength of the inter-sublattice exchange coupling, and justifies the use of the simpler effective parameters model.

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