论文标题

X射线检测合成抗铁磁体中超短自旋电流脉冲

X-ray detection of ultrashort spin current pulses in synthetic antiferromagnets

论文作者

Stamm, C., Murer, C., Wörnle, M. S., Acremann, Y., Gort, R., Däster, S., Reid, A. H., Higley, D. J., Wandel, S. F., Schlotter, W. F., Gambardella, P.

论文摘要

我们通过将FS激光脉冲施加到一个层并通过元素分辨X射线光谱在另一层中测量另一层磁反应来探索磁性多层样品中自旋电流的超快产生。在ni(5〜nm)/ru(2〜nm)/fe(4〜nm)中,由于rkky相互作用,ni和fe磁化方向在抗fiferromagnet上夫妇,但可以通过施加的磁场平行地定向。在用FS激光脉冲激发了顶部的Ni层之后,我们还发现,下方的Fe层是ni和Fe磁化的平行和反平行方向之间的$ 4.1 \ pm 1.9 $ \%振幅的差异。我们将这种差异归因于FS激光脉冲产生的旋转电流的影响,该旋转电流从NI转移到Fe层。我们的结果证实,超级旋转转运在确定合成抗铁磁层的子PS脱氧化动力学方面起着作用,但也证明了由于热电子动力学而引起的大量去极化效应,这些动力学与Ni和Fe中磁化的相对相对对齐。

We explore the ultrafast generation of spin currents in magnetic multilayer samples by applying fs laser pulses to one layer and measuring the magnetic response in the other layer by element-resolved x-ray spectroscopy. In Ni(5~nm)/Ru(2~nm)/Fe(4~nm), the Ni and Fe magnetization directions couple antiferromagnetically due to the RKKY interaction, but may be oriented parallel through an applied magnetic field. After exciting the top Ni layer with a fs laser pulse, we find that also the Fe layer underneath demagnetizes, with a $4.1 \pm 1.9$\% amplitude difference between parallel and antiparallel orientation of the Ni and Fe magnetizations. We attribute this difference to the influence of a spin current generated by the fs laser pulse that transfers angular momentum from the Ni into the Fe layer. Our results confirm that superdiffusive spin transport plays a role in determining the sub-ps demagnetization dynamics of synthetic antiferromagnetic layers, but also evidence large depolarization effects due to hot electron dynamics, which are independent of the relative alignment of the magnetization in Ni and Fe.

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