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Nonlinear dynamics and collective excitations in layered superconducting structures

A. S. Zel’tserPhysicotechnical Institute, Academy of Sciences of the Ukrainian SSR, DonetskYu. S. KivsharPhysicotechnical Institute, Academy of Sciences of the Ukrainian SSR, DonetskT. K. SobolevaPhysicotechnical Institute, Academy of Sciences of the Ukrainian SSR, Donetsk
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Nonlinear excitations in layered superconducting structures formed by a system of long interacting parallel Josephson junctions are investigated theoretically. It is shown that dynamic supersolitons, viz., localized density excitations of a vortex lattice, can propagate in such a system. Effective equations of fluxon lattice dynamics in a magnetic field are used for analyzing two types of soliton excitations: kinks whose propagation involves magnetic flux transfer across superconducting layers, and envelope solitons. The relaxation of dynamic kinks is investigated by using numerical methods.

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