期刊论文详细信息
Decay of plasmonic waves in Josephson junction chains
Article
关键词: QUANTUM PHASE-TRANSITIONS;    QUASI-PARTICLE LIFETIME;    FLUCTUATIONS;    TRANSPORT;    CHARGE;   
DOI  :  10.1103/PhysRevB.98.224513
来源: SCIE
【 摘 要 】

We study the damping of plasma waves in linear Josephson junction chains as well as in two capacitively coupled chains. In the parameter regime where the ground capacitance can be neglected, the theory of the antisymmetric mode in the double chain can be mapped onto the theory of a single chain. We consider two sources of relaxation: the scattering from quantum phase slips (QPS) and the interaction among plasmons related to the nonlinearity of the Josephson potential. The contribution to the relaxation rate 1/tau from the nonlinearity scales with the fourth power of frequency omega, while the phase-slip contribution behaves as a power law with a nonuniversal exponent. In the parameter regime where the charging energy related to the junction capacitance is much smaller than the Josephson energy, the amplitude of QPS is strongly suppressed. This makes the relaxation mechanism related to QPS efficient only at very low frequencies. As a result, for chains that are in the infrared limit on the insulating side of the superconductor-insulator transition, the quality factor omega tau shows a strongly nonmonotonic dependence on frequency, as was observed in a recent experiment.

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