论文标题
通过驱动的双量子点,约瑟夫森当前电流
Anomalous Josephson current through a driven double quantum dot
论文作者
论文摘要
基于量子点的Josephson交界处通过当地大门提供便捷的可调性。在这里,我们根据串行双量子点分析了约瑟夫森连接点,其中两个点通过相等频率的相移微波色调单独门控。我们计算整个连接的时间平均电流,并确定驱动器之间的相移如何修改连接的电流相关关系。发现点上的破坏粒子孔对称性会导致有限的平均异常约瑟夫森电流,而固定为零的超导体之间的相位偏置。因此,这种微波盖式弱环节实现了一个可调节的“ floquet $φ_{0} $ - 交界处”,最大的关键电流可用于驱动频率稍微偏离谐波,并在每个点上令人兴奋的子隙状态令人兴奋的能源成本。我们提供了通过分析分析来支持无限超导间隙和弱点间耦合的数值结果。我们确定了相互作用驱动的$ 0-π$ $ 0-π$的转变约瑟夫森电流,这是驱动相位差的函数。最后,我们证明可以调整该连接点,以便提供时间平均的约瑟夫森当前相位关系的完整整流。
Josephson junctions based on quantum dots offer a convenient tunability by means of local gates. Here we analyze a Josephson junction based on a serial double quantum dot in which the two dots are individually gated by phase-shifted microwave tones of equal frequency. We calculate the time-averaged current across the junction and determine how the phase shift between the drives modifies the current-phase relation of the junction. Breaking particle-hole symmetry on the dots is found to give rise to a finite average anomalous Josephson current with phase bias between the superconductors fixed to zero. This microwave gated weak link thus realizes a tunable "Floquet $φ_{0}$-junction" with maximum critical current achieved for driving frequencies slightly off-resonance with the energy cost of exciting a sub-gap state on each dot. We provide numerical results supported by an analytical analysis for infinite superconducting gap and weak inter-dot coupling. We identify an interaction driven $0-π$ transition of anomalous Josephson current as a function of driving phase difference. Finally, we show that this junction can be tuned so as to provide for complete rectification of the time-averaged Josephson current phase relation.