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Conductance signatures of electron confinement induced by strained nanobubbles in graphene

机译:电导签名的电子监禁在石墨烯nanobubbles紧张引起的

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摘要

We investigate the impact of strained nanobubbles on the conductance characteristics of graphene nano-ribbons using a combined molecular dynamics - tight-binding simulation scheme. We describe in detail how the conductance, density of states, and current density of zigzag or armchair graphene nanoribbons are modified by the presence of a nanobubble. In particular, we establish that low-energy electrons can be confined in the vicinity of or within the nanobubbles by the delicate interplay among the pseudo-magnetic field pattern created by the shape of the bubble, mode mixing, and substrate interaction. The coupling between confined evanescent states and propagating modes can be enhanced under different clamping conditions, which translates into Fano resonances in the conductance traces.
机译:我们研究nanobubbles紧张的影响在石墨烯的电导特性nano-ribbons使用分子动力学结合起来——紧束缚仿真方案。详细的电导,态密度,和电流密度的锯齿形或扶手椅石墨烯带的制作都被修改的存在nanobubble。低能电子可以限制或在附近的nanobubbles精致pseudo-magnetic之间的相互作用场模式由泡沫的形状,混合模式,底物的相互作用。限制损耗状态和之间的耦合可以增强在不同的传播模式夹紧的条件下,转化为法诺谐振电导的痕迹。

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