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Easy method for measurement of environmental impedance and superconducting phase fluctuations in one-dimensional arrays of Josephson junctions

机译:在Josephson结合的一维阵列中测量环境阻抗和超导相波动的易用方法

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摘要

We conduct microwave impedance measurements on a one-dimensional (1D) array of Josephson junctions to experimentally determine the Josephson inductance and shunt resistance of the constituent junctions. The effective Josephson energy provides an estimate of the environmental impedance, which is greatly increased due to phase fluctuations in the neighboring junctions. This enhancement is attributed to the charge solitons in the 1D system. In general, the environmental impedance is dominated by the junction's normal resistance in the superconducting phase coherent regime, but overwhelmed by zero-bias resistance and differential resistance, respectively, in the Coulomb blockaded regime and in the phase fluctuating regime. The change in phase fluctuations owing to a dc bias agrees with the finite temperature phase diffusion model.
机译:我们对约瑟夫森交汇处的一维(1D)阵列进行微波阻抗测量,以实验确定组成交叉点的Josephson电感和分流电阻。 有效的Josephson Energy提供了对环境阻抗的估计,由于相邻连接中的相位波动,大大增加。 这种增强归因于1D系统中的电荷孤子。 通常,环境阻抗在超导相位相干状态下的结致正常电阻,而是在库仑阻挡的状态和相位波动状态下分别在零偏置抗性和差动阻力中封闭。 由于DC偏差而逐渐变化与有限温度相位扩散模型同意。

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