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Thickness dependence of the interfacial Dzyaloshinskii–Moriya interaction in inversion symmetry broken systems

机译:反对称破碎系统中界面Dzyaloshinskii-Moriya相互作用的厚度依赖性

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摘要

In magnetic multilayer systems, a large spin-orbit coupling at the interface between heavy metals and ferromagnets can lead to intriguing phenomena such as the perpendicular magnetic anisotropy, the spin Hall effect, the Rashba effect, and especially the interfacial Dzyaloshinskii–Moriya (IDM) interaction. This interfacial nature of the IDM interaction has been recently revisited because of its scientific and technological potential. Here we demonstrate an experimental technique to straightforwardly observe the IDM interaction, namely Brillouin light scattering. The non-reciprocal spin wave dispersions, systematically measured by Brillouin light scattering, allow not only the determination of the IDM energy densities beyond the regime of perpendicular magnetization but also the revelation of the inverse proportionality with the thickness of the magnetic layer, which is a clear signature of the interfacial nature. Altogether, our experimental and theoretical approaches involving double time Green's function methods open up possibilities for exploring magnetic hybrid structures for engineering the IDM interaction.
机译:在磁性多层系统中,重金属和铁磁体之间的界面处的大自旋轨道耦合会导致有趣的现象,例如垂直磁各向异性,自旋霍尔效应,Rashba效应,尤其是界面Dzyaloshinskii–Moriya(IDM)相互作用。 IDM交互的这种界面性质最近因其科学和技术潜力而被重新研究。在这里,我们演示了一种直接观察IDM相互作用的实验技术,即布里渊光散射。通过布里渊光散射系统地测量的不可逆的自旋波色散,不仅可以确定垂直磁化范围以外的IDM能量密度,还可以揭示与磁层厚度成反比的关系。界面性质的清晰签名。总而言之,我们涉及双时格林函数方法的实验和理论方法为探索磁性混合结构以工程化IDM相互作用开辟了可能性。

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