论文标题
挫败感驱动的约瑟夫森阶段动态
Frustration driven Josephson phase dynamics
论文作者
论文摘要
约瑟夫森方程预测了与静态电压诱导的振荡电流的超导连接的相位状态的显着影响。如果不利用谐波驱动器,可以通过产生振荡电压来扭曲范式是一个根本上相关的问题,但尚未完全解决。在这里,我们证明了具有振荡阶段进化的动态状态是驱动的约瑟夫森系统的一般标志,该系统在约瑟夫森耦合中表现出标志竞争。我们表明,在沮丧的约瑟夫森系统中,通过在不同的基础状态之间推动转换来打开振荡相动态,这可以通过改变设定相状态的参数来诱导。值得注意的是,约瑟夫森相空间中的过渡的特征允许不同类型的动力学,几个或几个谐波。该结果阐明了任何具有沮丧的约瑟夫耦合的超导系统的特征标记,并且可以利用以消除基础阶段的复杂性。
The Josephson equations predict remarkable effects concerning the phase state of a superconducting junction with an oscillating current induced by a static voltage. Whether the paradigm can be twisted by yielding an oscillating voltage without making use of harmonic drives is a fundamentally relevant problem yet not fully settled. Here, we demonstrate that a dynamical regime with an oscillating phase evolution is a general hallmark of driven Josephson systems exhibiting sign competition in the Josephson couplings. We show that in frustrated Josephson systems an oscillating phase dynamics gets switched on by driving the changeover among different ground states, which can be induced by varying the parameters that set the phase state. Remarkably, the character of the transitions in the Josephson phase space allows different types of dynamics, with few or several harmonics. This result sets out a characteristic mark of any superconducting system with frustrated Josephson couplings and can be exploited to disentangle the complexity of the underlying phases.