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首页> 外文期刊>Physical review >Adiabatic polaron dynamics and Josephson effect in a superconducting molecular quantum dot
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Adiabatic polaron dynamics and Josephson effect in a superconducting molecular quantum dot

机译:超导分子量子点中的绝热极化子动力学和约瑟夫森效应

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摘要

We study the Josephson current through a resonant level coupled to a vibration mode (local Holstein model) in the adiabatic limit of low oscillator frequency. A semiclassical theory is then appropriate and allows us to consider the oscillator dynamics within the Born-Oppenheimer approximation for arbitrary electron-vibration couplings. The resulting Fokker-Planck equation has been solved in the most relevant underdamped limit and yields the oscillator distribution function and the Josephson current. Remarkably, a transition from single-well to double-well behavior of the effective oscillator potential surface is possible and can be tuned by variation in the superconducting phase difference. The Josephson current is shown to be only weakly affected by the electron-vibration coupling due to strong phonon localization near the bottom of the potential surface.
机译:我们研究了在低振荡器频率的绝热极限内通过与振动模式(局部Holstein模型)耦合的共振能级的约瑟夫森电流。那么,半经典理论是合适的,它允许我们考虑任意电子振动耦合在Born-Oppenheimer近似内的振荡器动力学。所产生的Fokker-Planck方程已在最相关的欠阻尼极限中求解,并产生了振荡器分布函数和约瑟夫森电流。值得注意的是,有效振荡器势能表面从单阱行为到双阱行为的转变是可能的,并且可以通过超导相位差的变化进行调整。由于势能表面底部附近的强声子局部化,显示出约瑟夫森电流仅受电子振动耦合的微弱影响。

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