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Anomalous RF induced steps in resonant Josephson tunnel junctions for voltage standard maintenance

机译:谐振约瑟夫森隧道结中异常的RF感应台阶,用于电压标准维护

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摘要

The authors theoretically investigated the current steps in the I-V (current-voltage) characteristics of a long Josephson tunnel junction driven by microwaves at frequencies near its geometrical resonance. They used a numerical algorithm based on a lossy transmission line model of the Josephson tunnel junction to calculate the DC current density distribution. In addition to the fundamental microwave frequency, harmonic contents of the tunneling current are also considered. The calculations show a strong asymmetric behavior of the current steps with respect to the quasi-particle curve. It is suggested that the excitation of higher harmonic waves gives rise to these anomalous microwave-induced steps. Due to the nonuniform DC-tunneling-current density distribution, the amplitudes of these current steps are not usually larger than 10% of the critical current. Since the critical current in long junctions is of the order of milliamperes, these amplitudes are considered relatively large.
机译:作者从理论上研究了长约瑟夫森隧道结的I-V(电流-电压)特性中的电流阶跃,该结由微波以接近其几何共振的频率驱动。他们使用了基于约瑟夫森隧道结的有损传输线模型的数值算法来计算直流电流密度分布。除了基本的微波频率,还考虑了隧道电流的谐波含量。计算结果表明,当前阶跃相对于准粒子曲线具有很强的不对称性。建议高次谐波的激发会引起这些异常的微波感应台阶。由于直流隧道电流密度分布不​​均匀,这些电流阶跃的幅度通常不大于临界电流的10%。由于长结中的临界电流约为毫安,因此这些幅度被认为相对较大。

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