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Vibration-mode-induced Shapiro steps and back action in Josephson junctions

机译:振动模式引起的Shapiro台阶和约瑟夫森交界处的反作用

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A model of a superconducting tunnel junction coupled to a mechanical oscillator is studied at zero temperature in the case of linear coupling between the oscillator and tunneling electrons. It is found that the Josephson current flowing between two superconductors is modulated by the motion of the oscillator. Coupling to harmonic oscillator produces additional Shapiro steps in Ⅰ-Ⅴ characteristic of Josephson junction whose position is given by the frequency of the vibration mode. We also find a new velocity-dependent term originating from the back action of the ac Josephson current. This term is periodic in time and vanishes at zero bias voltage.
机译:在振荡器和隧穿电子之间线性耦合的情况下,在零温度下研究了耦合到机械振荡器的超导隧道结模型。发现在两个超导体之间流动的约瑟夫森电流被振荡器的运动调制。耦合到谐振子会在约瑟夫逊结的Ⅰ-Ⅴ特性中产生额外的Shapiro阶跃,其位置由振动模式的频率确定。我们还发现了一个新的速度相关项,其源于交流约瑟夫森电流的反作用。该术语在时间上是周期性的,并且在零偏置电压时消失。

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