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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Effect of inductive and capacitive coupling on the current-voltage characteristic and electromagnetic radiation from a system of Josephson junctions
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Effect of inductive and capacitive coupling on the current-voltage characteristic and electromagnetic radiation from a system of Josephson junctions

机译:感应和电容耦合对约瑟夫森交汇处系统电流 - 电压特性和电磁辐射的影响

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摘要

We have studied the current-voltage characteristic of a system of long Josephson junctions taking into account the inductive and capacitive coupling. The dependence of the average time derivative of the phase difference on the bias current and spatiotemporal dependences of the phase difference and magnetic field in each junction are considered. The possibility of branching of the current-voltage characteristic in the region of zero field step, which is associated with different numbers of fluxons in individual Josephson junctions, is demonstrated. The current-voltage characteristic of the system of Josephson junctions is compared with the case of a single junction, and it is shown that the observed branching is due to coupling between the junctions. The intensity of electromagnetic radiation associated with motion of fluxons is calculated, and the effect of coupling between junctions on the radiation power is analyzed.
机译:考虑到电感和电容耦合,我们研究了长Josephson结系统的电流电压特性。 考虑了平均时间衍生对每个结中相位差和磁场的偏置电流和时空依赖的相位差的依赖性。 证实了与单个Josephson结中的不同数量的浮雕相关联的零场步骤中的电流电压特性的可能性。 将Josephson结系统的电流电压特性与单个结的情况进行比较,并且示出了观察到的分支是由于连接之间的耦合。 计算与浮灯运动运动相关的电磁辐射强度,分析了结耦合在辐射功率上的耦合的效果。

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