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首页> 外文期刊>Physical Review, B. Condensed Matter >Resonant-cavity-induced phase locking and voltage steps in a Josephson array - art. no. 144522
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Resonant-cavity-induced phase locking and voltage steps in a Josephson array - art. no. 144522

机译:约瑟夫森阵列中谐振腔引起的锁相和电压阶跃-艺术。没有。 144522

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摘要

We describe a simple dynamical model for an underdamped Josephson junction array coupled to a resonant cavity. From numerical solutions of the model in one dimension, we find that (i) current-voltage characteristics of the array have self-induced resonant steps (SIRS), (ii) at fixed disorder and coupling strength, the array locks into a coherent, periodic state above a critical number of active Josephson junctions, and (iii) when N-a active junctions are synchronized on an SIRS, the energy emitted into the resonant cavity is quadratic with N-a. All three features are in agreement with a recent experiment. [References: 36]
机译:我们描述了耦合到谐振腔的欠阻尼约瑟夫逊结阵列的简单动力学模型。从一维模型的数值解中,我们发现(i)阵列的电流-电压特性具有自感应谐振阶跃(SIRS),(ii)在固定的无序度和耦合强度下,阵列锁定为相干的,高于活跃的约瑟夫逊结的临界数量的周期状态,以及(iii)当在SIRS上同步Na个活跃结时,发射到谐振腔中的能量是Na的平方。这三个功能与最近的实验一致。 [参考:36]

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