Microscopic tunneling theory of long Josephson junctions

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We present a numerical scheme for solving a nonlinear partial integro-differential equation with nonlocal time dependence. The equation describes the dynamics in a long Josephson junction modeled by use of the microscopic theory for tunneling between superconductors. We demonstrate that the detailed behavior of a solitonic mode (fluxon dynamics) in the junction is different from the results of the conventional perturbed sine-Gordon model.
Original languageEnglish
JournalPhysical Review B
Issue number21
Pages (from-to)12457-12464
Publication statusPublished - 1992

Bibliographical note

Copyright (1992) by the American Physical Society.

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