论文标题

Skyrmion晶格以合成反铁磁铁和螺旋模式托管

Skyrmion lattice hosted in synthetic antiferromagnets and helix modes

论文作者

Wang, X. -G., Chotorlishvili, L., Tatara, G., Dyrdał, A., Guo, Guang-hua, Dugaev, V. K., Barnaś, J., Parkin, S. S. P., Ernst, A.

论文摘要

薄的铁磁膜可以具有非常规的磁性特性,为在Spintronic Technologies中使用它们开辟了一条新的道路。在利用三种不同方法的目前工作中,我们全面分析了合成反铁磁体中的天际晶格的phason激发。为了分析Skyrmion晶格的Phason激发,我们基于三个耦合螺旋构建了一个分析模型,并找到了无线性间隙模式。微磁模拟也支持此结果。此外,当合成抗磁性不同层之间的耦合与内部耦合相当或更大时,基于结合的Thiele方程在刚性的天际晶格模型中也达到了类似的结果。此外,我们还考虑了与Phason激发相关的轨道角动量和自旋泵送电流。由于在Skyrmion晶格的情况下,无间隙的激发,对于泵送微波的任意频率,泵送电流不是零。在单个天空中,当微波频率位于单个天空谱的间隙内时,没有泵送电流。

Thin ferromagnetic films can possess unconventional magnetic properties, opening a new road for using them in spintronic technologies. In the present work exploiting three different methods, we comprehensively analyze phason excitations of a skyrmion lattice in synthetic antiferromagnets. To analyze phason excitations of the skyrmion lattice, we have constructed an analytical model based on three coupled helices and found a linear gapless mode. Micromagnetic simulations also support this result. Moreover, a similar result has been achieved within the rigid skyrmion lattice model based on the coupled Thiele's equations, when the coupling between skyrmions in different layers of the synthetic antiferromagnetic is comparable to or larger than the intralayer coupling. In addition, we also consider the orbital angular momentum and spin pumping current associated with phason excitations. Due to the gapless excitations in the case of skyrmion lattice, the pumping current is nonzero for the arbitrary frequency of pumping microwaves. In the case of individual skyrmions, no current is pumped when microwave frequency is inside the gap of the spectrum of individual skyrmions.

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