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Spin pumping at Permalloy/graphene interface

机译:旋转泵送在百货罗容/石墨烯界面

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Ferromagnetic resonance (FMR) measurements on Permalloy/graphene (Py/Gr) films show an enhancement of the Gilbert damping in the ferromagnetic layer as a consequence of spin pumping at the Py/Gr interface, which is driven by the Py magnetization dynamics. The remarkable increase in the FMR line-width compares with observations in other bilayer systems in which thick layers (thicker than the spin diffusion length) of heavy metals with strong spin-orbit interaction are employed as the non-magnetic layer. By reversing the stacking order of the graphene/ferromagnet, we rule out any interface effects and calculate the damping of the ferromagnet due to the graphene. Our results indicate that spin relaxation in CVD graphene must be greatly enhanced in order to account for the losses of angular momentum in the ferromagnet.
机译:渗透合金/石墨烯(PY / GR)膜上的铁磁共振(FMR)测量显示,由于在PY / GR界面处的旋转泵送的后果,其在铁磁层中的增强,其由PY磁化动态驱动。 FMR线宽的显着增加与其他双层系统的观察结果相比,其中使用具有强旋转轨道相互作用的重金属的厚层(厚的旋转扩散长度)作为非磁性层。 通过反转石墨烯/铁磁性的堆叠顺序,我们排除了任何界面效果,并根据石墨烯计算铁磁性的阻尼。 我们的结果表明,CVD石墨烯中的旋转松弛必须大大提高,以便考虑铁磁性角动量的损失。

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