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Formation of unconventional standing waves at graphene edges by valley mixing and pseudospin rotation

机译:通过谷底混合和伪自旋旋转在石墨烯边缘形成非常规驻波

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摘要

We investigate the roles of the pseudospin and the valley degeneracy in electron scattering at graphene edges. It is found that they are strongly correlated with charge density modulations of short-wavelength oscillations and slowly decaying beat patterns in the electronic density profile. Theoretical analyses using nearest-neighbor tight-binding methods and first-principles density-functional theory calculations agree well with our experimental data from scanning tunneling microscopy. The armchair edge shows almost perfect intervalley scattering with pseudospin invariance regardless of the presence of the hydrogen atom at the edge, whereas the zigzag edge only allows for intravalley scattering with the change in the pseudospin orientation. The effect of structural defects at the graphene edges is also discussed.
机译:我们研究伪自旋和谷简并在石墨烯边缘电子散射中的作用。发现它们与短波长振荡的电荷密度调制和电子密度分布中的缓慢衰减的拍子模式密切相关。使用最近邻紧密结合方法和第一原理密度泛函理论计算的理论分析与我们从扫描隧道显微镜得到的实验数据非常吻合。无论边缘处是否存在氢原子,扶手椅边缘都显示出几乎完美的伪随机不变的间隔波散射,而之字形边缘仅允许随着伪旋转方向变化而进行谷内散射。还讨论了石墨烯边缘结构缺陷的影响。

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