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A Nanoelectromechanical Single-Atom Switch

机译:纳米机电单原子开关

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摘要

We have exploited the electromechanical properties of gated mechanical break junctions to form single-atom relays. The gate voltage can be used to reversibly switch between a monatomic contact with a conductance around 2e(2)/h and the tunneling regime. In tunneling, the source-drain conductance varies smoothly with gate voltage. The characteristics of the devices can be understood within a simple continuum model. It indicates that the elastic properties of the substrate facilitate the electromechanical tuning and that the details of the switching depend sensitively on the nanoscale geometry of the electrode tips.
机译:我们已经利用门控机械断开结的机电性能来形成单原子继电器。栅极电压可用于在电导率约为2e(2)/ h的单原子接触与隧穿机制之间可逆切换。在隧穿中,源极-漏极电导随栅极电压而平滑变化。可以在简单的连续模型中了解设备的特性。这表明衬底的弹性特性有利于机电调谐,并且切换的细节敏感地取决于电极头的纳米级几何形状。

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