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ac-induced thermal vortex escape in magnetic-field-embedded long annular Josephson junctions

机译:嵌入磁场的长环形约瑟夫森结中的交流诱导热涡逸逸出

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We investigate theoretically the thermal escape behavior of trapped magnetic fluxons in long annular Josephson junctions in dc magnetic fields, and perturbed by a probing ac current. The study is motivated by recently published experimental data that show multipeaked escape distributions for increasing bias current in the extreme low temperature regime when the system is perturbed by an ac current. We demonstrate that the observed behavior of multipeaked escape distributions can be reproduced and predicted in the entirely classical, thermally driven sine-Gordon model, which is widely accepted as accurately describing the experimental system. We interpret the observed multipeaked distributions as being directly induced by dynamical resonances between the applied ac perturbation and the natural oscillation frequency of a trapped fluxon.
机译:我们从理论上研究直流磁场中长环形约瑟夫森结中被俘获的磁通量的热逸散行为,并受到交流电流的干扰。这项研究受到最近发表的实验数据的启发,这些数据显示了当系统受到交流电流干扰时,在极端低温条件下增加偏流的多峰逃逸分布。我们证明,可以在完全经典的热驱动正弦-戈登模型中重现和预测多峰逃逸分布的观察到的行为,并对其进行预测,该模型已被广泛接受,可以准确地描述实验系统。我们将观察到的多峰分布解释为直接由所施加的交流扰动和捕获的通量的自然振荡频率之间的动态共振引起。

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