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Spin-orbit torque-driven skyrmion dynamics revealed by time-resolved X-ray microscopy

机译:时间分辨的X射线显微镜揭示了自旋轨道驱动的天体离子动力学

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Magnetic skyrmions are topologically protected spin textures with attractive properties suitable for high-density and low-power spintronic device applications. Much effort has been dedicated to understanding the dynamical behaviours of the magnetic skyrmions. However, experimental observation of the ultrafast dynamics of this chiral magnetic texture in real space, which is the hallmark of its quasiparticle nature, has so far remained elusive. Here, we report nanosecond-dynamics of a 100nm-diameter magnetic skyrmion during a current pulse application, using a time-resolved pump-probe soft X-ray imaging technique. We demonstrate that distinct dynamic excitation states of magnetic skyrmions, triggered by current-induced spin–orbit torques, can be reliably tuned by changing the magnitude of spin–orbit torques. Our findings show that the dynamics of magnetic skyrmions can be controlled by the spin–orbit torque on the nanosecond time scale, which points to exciting opportunities for ultrafast and novel skyrmionic applications in the future.
机译:磁性天生离子是受拓扑保护的自旋纹理,具有吸引人的特性,适用于高密度和低功率自旋电子器件应用。为了了解磁性天体的动力学行为,人们付出了很多努力。然而,迄今为止,对这种手性磁性质在超大空间中的超快动力学的实验观察(仍然是其准粒子性质的标志)仍然难以捉摸。在这里,我们报告了使用时间分辨泵浦探针软X射线成像技术在电流脉冲施加过程中直径为100nm的磁性天rm的纳秒动力学。我们证明,通过改变自旋轨道扭矩的大小,可以可靠地调整由电流感应的自旋轨道扭矩触发的磁天琴的不同动态激发态。我们的发现表明,磁性天体离子的动力学可以通过纳秒级的自旋轨道转矩来控制,这为将来的超快和新型天体离子应用带来了令人兴奋的机遇。

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