论文标题

使用旋转波探测激光诱导的自旋流动产生

Probing Laser-Induced Spin-Current Generation in Synthetic Ferrimagnets Using Spin Waves

论文作者

Lichtenberg, Tom, van Hees, Youri L. W., Beens, Maarten, Levels, Caspar J., Lavrijsen, Reinoud, Duine, Rembert A., Koopmans, Bert

论文摘要

使用飞秒激光脉冲激发时,几种稀土过渡金属铁磁系统在激发时表现出全光磁化。尽管这种现象对于未来的光磁数据存储应用非常有前途,但几乎不了解非本地自旋传输在这些系统中的作用。使用CO/GD和CO/TB双层,我们将稀土材料对生成的自旋电流的贡献隔离,通过使用它们在相邻的铁磁层中激发的动力学作为探针。通过测量THZ站立的自旋波以及GHz均匀的进攻模式,我们探测了这些自旋电流的高频和低频成分。低频均匀模式表明GD对自旋电流有显着贡献,但不是TB,这与在含TB的系统中实现全光开关的难度一致。对THZ频率自旋波的测量结果揭示了稀有地球产生的自旋电流无法在子PS时间尺度上激发动力学。我们使用$ S $ -D $模型进行了建模工作,该模型有效地重现了我们的结果,并让我们可以根据旋转电流的时间概况来解释行为。

Several rare-earth transition-metal ferrimagnetic systems exhibit all-optical magnetization switching upon excitation with a femtosecond laser pulse. Although this phenomenon is very promising for future opto-magnetic data storage applications, the role of non-local spin transport in these systems is scarcely understood. Using Co/Gd and Co/Tb bilayers we isolate the contribution of the rare-earth materials to the generated spin currents by using the precessional dynamics they excite in an adjacent ferromagnetic layer as a probe. By measuring THz standing spin-waves as well as GHz homogeneous precessional modes, we probe both the high- and low-frequency components of these spin currents. The low-frequency homogeneous mode indicates a significant contribution of Gd to the spin current, but not from Tb, consistent with the difficulty in achieving all-optical switching in Tb-containing systems. Measurements on the THz frequency spin waves reveal the inability of the rare-earth generated spin currents to excite dynamics at the sub-ps timescale. We present modelling efforts using the $s$-$d$ model, which effectively reproduce our results and allow us to explain the behavior in terms of the temporal profile of the spin current.

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