Magnetoplasmon Excitations at Graphene Vortex Hall Fluid Edge

M. Rabiu, S. Mensah, I. Y. Seini, S. S. Abukari
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Abstract

We investigate magnetoplasmon dynamics localized on the edges of graphene vortex Hall fluid. The vortex matter captures an anomalous term that causes vortex localization near fluid boundary and creates a double boundary layer, with being filling factor. The term also has qualitative effect on resonant excitations of edge magnetoplasmons. We found that, for sharp edges under experimental conditions, graphene edge magnetoplasmon (EMP) resonances have similar behavior as in recent experiments. Gradual distinctions arise for smooth edges in the presence of the anomalous term, where a weak EMP peak appears. The second peak becomes well noticed as the smoothness is increased. We identified the resonant mode as an Inter-EMP. It originates from the oscillations of charges in the inner boundary of the double layer. The present observation brings to light the direct cause of Inter-EMP which remained to be detected in graphene experiments.
石墨烯涡旋霍尔流体边缘的磁离激元激发
我们研究了石墨烯涡旋霍尔流体边缘的磁等离子体动力学。涡旋物质捕获了一个异常项,使涡旋在流体边界附近局部化,形成双边界层,填充因子为1。该项对边缘磁等离子激元的共振激发也有定性影响。我们发现,在实验条件下,对于尖锐边缘,石墨烯边缘磁等离子体(EMP)共振具有与最近实验相似的行为。在出现弱EMP峰的异常项的情况下,平滑边缘逐渐出现区别。随着平滑度的增加,第二个峰变得很明显。我们确定谐振模式为Inter-EMP。它起源于双层内边界电荷的振荡。目前的观察结果揭示了在石墨烯实验中尚未发现的Inter-EMP的直接原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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