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Diffusion current in a system of coupled Josephson junctions
Authors:Yu. M. Shukrinov  I. R. Rahmonov
Affiliation:1. Joint Institute for Nuclear Research, Dubna, Moscow oblast, 141980, Russia
2. Dubna International University, Dubna, Moscow oblast, 141980, Russia
3. Umarov Physicotechnical Institute, Academy of Sciences of the Republic of Tajikistan, Dushanbe, 734063, Tajikistan
Abstract:The role of a diffusion current in the phase dynamics of a system of coupled Josephson junctions (JJs) has been analyzed. It is shown that, by studying the temporal dependences of the superconducting, quasi-particle, diffusion, and displacement currents and the dependences of average values of these currents on the total current, it is possible to explain the main features of the current-voltage characteristic (CVC) of the system. The effect of a diffusion current on the character of CVC branching in the vicinity of a critical current and in the region of hysteresis, as well as on the part of CVC branch corresponding to a parametric resonance in the system is demonstrated. A clear interpretation of the differences in the character of CVC branching in a model of capacitively coupled JJs (CCJJ model) and a model of capacitive coupling with diffusion current (CCJJ+DC model) is proposed. It is shown that a decrease in the diffusion current in a JJ leads to the switching of this junction to an oscillating state. The results of model calculations are qualitatively consistent with the experimental data.
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