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Self‐Resonant Current Peaks in Josephson Junctions

机译:约瑟夫森结的自谐振电流峰值

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摘要

A finite difference scheme is described which yields solutions of the Josephson phase equation. This simulation technique is used to calculate the self‐resonant current peaks of a Josephson junction for the two cases, R≫ZJ and R≪ZJ, where R is the current drive source resistance and ZJ is the junction impedance. The simulation current peaks are compared with ones derived by a perturbation technique for the same two regimes, and also with experiment. In terms of approximating experimental results, it is found that the perturbation solutions with constant damping, σ, are better than those with constant Q; although at small σ the magnitude and shape of the current peaks do not agree well with observations. However, simulation results at small σ are reasonably consistent with experiment. Simulation results for the case R≪ZJ indicate that self‐limiting will affect the magnetic field dependence of the resonances when L/λJ≥2, where L is the length of the junction and λJ is the Josephson penetration depth.
机译:描述了一个有限差分方案,该方案产生了约瑟夫森相位方程的解。该仿真技术用于计算R≫ZJ和R≪ZJ两种情况下约瑟夫森结的自谐振电流峰值,其中R是电流驱动源电阻,ZJ是结阻抗。将模拟电流峰值与通过摄动技术针对相同的两种状态得出的峰值进行比较,并与实验进行比较。从近似的实验结果来看,发现具有恒定阻尼σ的摄动解比具有恒定Q的摄动解更好。尽管在σ很小的情况下,电流峰值的大小和形状与观察结果不一致。但是,小σ下的仿真结果与实验相当吻合。 R≪ZJ情况的仿真结果表明,当L /λJ≥2时,自限制会影响共振的磁场依赖性,其中L是结的长度,而λJ是约瑟夫森的穿透深度。

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    《Journal of Applied Physics》 |1971年第3期|共8页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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