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DC voltage profile of a 1D pumped wire with two dynamical and one static impurities

机译:具有两种动态杂质和一种静态杂质的一维抽运电线的直流电压曲线

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摘要

In this work we study the behavior of the voltage profile of a I D quantum wire with an impurity when transport is induced by two ac voltages that oscillating with a phase lag define a quantum pump. The voltage profile sensed along the wire by the voltage probe, that we assume weakly coupled to the system, exhibits a Friedel's oscillations structure inside the region delimited by the position of the two ac voltages that induce transport. On the other hand, outside this region the oscillations are suppressed. Using perturbation theory in the coupling constant of the voltage probe we derived analytical expressions for the DC current valid for the adiabatic regime. We also compare our analytical results with the exact numerical calculations using Keldysh non-equilibrium Green's functions formalism.
机译:在这项工作中,我们研究了当带有两个相位滞后振荡的两个交流电压引起的输运引起量子泵浦时,带有杂质的I D量子线的电压分布行为。我们假设弱耦合到系统的电压探针沿着导线感应到的电压曲线在由两个引起传输的交流电压的位置所界定的区域内呈现出弗里德尔振荡结构。另一方面,在该区域之外,振荡被抑制。在电压探头的耦合常数中使用扰动理论,我们得出了对绝热状态有效的直流电流的解析表达式。我们还将比较我们的分析结果与使用Keldysh非平衡格林函数形式主义的精确数值计算。

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