论文标题

飞秒Xuv散射揭示的光激发后,手性更快的手性与共线磁性恢复

Faster chiral versus collinear magnetic order recovery after optical excitation revealed by femtosecond XUV scattering

论文作者

Kerber, Nico, Ksenzov, Dmitriy, Freimuth, Frank, Capotondi, Flavio, Pedersoli, Emanuele, Lopez-Quintas, Ignacio, Seng, Boris, Cramer, Joel, Litzius, Kai, Lacour, Daniel, Zabel, Hartmut, Mokrousov, Yuriy, Kläui, Mathias, Gutt, Christian

论文摘要

虽然Dzyaloshinskii-Moriya相互作用(DMI)稳定的手性自旋结构是候选人作为新型信息携带者,但它们在FS-PS时间尺度上的动态却鲜为人知。由于散装海森堡交换和界面DMI有两个不同的交换机制正在发挥作用,因此需要确定手性秩序的超快速动力学,并将其与常规共线秩序的动力学进行比较。使用XUV自由电子激光器,我们通过IR泵 - X射线磁性散射探针实验来确定磁性薄膜样品中域壁中手性顺序的FS-PS时间演变。脱离电磁后,我们观察到,与手性阶相关器相关的二分法(CL-CR)信号在域壁中的$ m_z m_x $恢复的速度明显高于(Cl + Cr)总信号,代表(CL + CR)信号,代表平均共线域磁磁磁化;我们探索了基于自旋结构动力学的解释,并减少了域壁内部的横向磁化波动,并发现后者可以解释实验数据,从而导致共线磁性和手性磁性的不同动力学。

While chiral spin structures stabilized by Dzyaloshinskii-Moriya interaction (DMI) are candidates as novel information carriers, their dynamics on the fs-ps timescale is little known. Since with the bulk Heisenberg exchange and the interfacial DMI two distinct exchange mechanisms are at play, the ultra-fast dynamics of the chiral order needs to be ascertained and compared to the dynamics of the conventional collinear order. Using an XUV free-electron laser we determine the fs-ps temporal evolution of the chiral order in domain walls in a magnetic thin film sample by an IR pump - X-ray magnetic scattering probe experiment. Upon demagnetisation we observe that the dichroic (CL-CR) signal connected with the chiral order correlator $m_z m_x$ in the domain walls recovers significantly faster than the (CL+CR) sum signal representing the average collinear domain magnetisation $m_z^2 + m_x^2$. We explore possible explanations based on spin structure dynamics and reduced transversal magnetisation fluctuations inside the domain walls and find that the latter can explain the experimental data leading to different dynamics for collinear magnetic order and chiral magnetic order.

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