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Scattering modes of skyrmions in a bilayer system with ferromagnetic coupling

机译:具有铁磁耦合的双层系统中吞咽散射模式

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摘要

Magnetic skyrmions are quasiparticle-like textures that are topologically different from a single domain magnetization state. Their topological protection, combined with the low current density needed to move them, make these objects relevant to be used as information storage structures. In such a context, the analysis of the interactions between skyrmions is interesting and relevant for future applications. In this work, through micromagnetic simulations and numerical calculations, we studied the interaction between two skyrmions living on different parallel ferromagnetic racetracks connected by an exchange-like interaction. The upper and lower racetracks are separated by a height offset and the interaction between the upper and the lower skyrmion is analyzed in terms of the magnetic and geometrical parameters. Three states are predicted, as a function of these parameters: scattered or free skyrmions, bound skymions, and annihilated skyrmions. Our results, presented in a phase diagram, demonstrate that even in the case here called free skyrmions, there is a small and brief interaction when both are close enough, but the skyrmion in the top layer does not drag the skyrmion in the bottom layer. For bound skyrmions, both keep linked during larger times. In the latter case, there are strong changes in the velocity of the skyrmions induced by the effect of a higher effective mass when both are coupled.
机译:磁Skyrmion是一种准粒子状纹理,在拓扑结构上不同于单畴磁化状态。它们的拓扑保护,加上移动它们所需的低电流密度,使这些物体成为相关的信息存储结构。在这样的背景下,对Skyrmion之间交互的分析非常有趣,并与未来的应用相关。在这项工作中,通过微磁模拟和数值计算,我们研究了生活在不同平行铁磁跑道上的两个Skyrmion之间的相互作用,这两个跑道通过交换式相互作用连接。通过高度偏移将上下赛道隔开,并根据磁场和几何参数分析上下skyrmion之间的相互作用。作为这些参数的函数,我们预测了三种状态:散射或自由Skyrmion、束缚skymions和湮灭Skyrmion。我们在相图中给出的结果表明,即使在这里称为自由skyrmion的情况下,当两者足够接近时,也会有一个小而短暂的交互作用,但顶层的skyrmion不会拖拽底层的skyrmion。对于绑定的Skyrmion,两者在较大时间内保持链接。在后一种情况下,当两者耦合时,由于更高的有效质量的影响,Skyrmion的速度会发生强烈的变化。

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