论文标题

合成反铁磁铁中的奇偶校验控制的自旋波激发

Parity-controlled spin-wave excitations in synthetic antiferromagnets

论文作者

Sud, A., Koike, Y., Iihama, S., Zollitsch, C., Mizukami, S., Kurebayashi, H.

论文摘要

我们在这项研究中报告说,在SIO2/SI底物上生长的ta/nife/ru/ru/nife/ta合成抗铁磁体堆栈中声学和光学模式的电流引起的激发。这两个TA层充当自旋扭矩源,在自旋电流和作用在其相邻的Nife层上的Oersted场中具有相反的极性。这可以在整个生长方向上产生空间自旋扭矩分布的奇数对称性,从而使我们能够观察到由均质扭矩激发的合成反铁磁体的不同自旋波激发效率。我们通过平面和反对称线形振幅的平面角依赖性来分析扭矩对称性的共振,并确认我们设备中声音(光学)模式的平行(垂直)泵送性质(垂直)泵送性质,这在空间均匀的均匀型号的模式下是在巨大的差异中。我们还为这种特殊的自旋刺激几何形状介绍了宏生模型,该模型非常支持我们的实验观察。我们的结果提供了通过本地旋转扭曲源来控制自旋波激发的能力,我们可以根据此概念探索更多的自旋波控制方案。

We report in this study the current-induced-torque excitation of acoustic and optical modes in Ta/NiFe/Ru/NiFe/Ta synthetic antiferromagnet stacks grown on SiO2/Si substrates. The two Ta layers serve as spin torque sources with the opposite polarisations both in spin currents and Oersted fields acting on their adjacent NiFe layers. This can create the odd symmetry of spatial spin torque distribution across the growth direction, allowing us to observe different spin-wave excitation efficiency from synthetic antiferromagnets excited by homogeneous torques. We analyse the torque symmetry by in-plane angular dependence of symmetric and anti-symmetric lineshape amplitudes for their resonance and confirm that the parallel (perpendicular) pumping nature for the acoustic (optical) modes in our devices, which is in stark difference from the modes excited by spatially homogeneous torques. We also present our macrospin model for this particular spin-torque excitation geometry, which excellently supports our experimental observation. Our results offer capability of controlling spin-wave excitations by local spin-torque sources and we can explore further spin-wave control schemes based on this concept.

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