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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Dynamics of quasioptical Josephson junction arrays for submillimeter coherent sources
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Dynamics of quasioptical Josephson junction arrays for submillimeter coherent sources

机译:亚毫米相干源的准光学约瑟夫森结阵列的动力学

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摘要

The dynamics of the quasi-optical two-dimensional Josephson junction arrays for oscillators is investigated. Numerical time-domain simulations of small-scale parallel arrays were performed. It is found that the DC biasing circuit determines the states of these arrays. It is also found that other states exist in which parts of the array operate in phase. The authors investigate the sensitivity of in-phase states to variations in junction critical currents and to nonvanishing fluctuations. It is found that the DC self-field effects do not provide a stable phase-locking mechanism and that RF interactions are necessary for locking the array in phase.
机译:研究了用于振荡器的准光学二维约瑟夫逊结阵列的动力学。进行了小型并行阵列的数值时域仿真。发现直流偏置电路确定了这些阵列的状态。还发现存在其他状态,其中阵列的各部分同相工作。作者研究了同相状态对结临界电流变化和不消失波动的敏感性。发现DC自场效应不能提供稳定的锁相机制,并且RF相互作用对于将阵列锁相是必需的。

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