Charge solitons in one-dimensional arrays of serially coupled Josephson junctions

Ziv Hermon, Eshel Ben-Jacob, and Gerd Schön
Phys. Rev. B 54, 1234 – Published 1 July 1996
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Abstract

We study a 1D array of Josephson coupled superconducting grains with kinetic inductance which dominates over the Josephson inductance. In this limit the dynamics of excess Cooper pairs in the array is described in terms of charge solitons, created by polarization of the grains. We analyze the dynamics of these topological excitations, which are dual to the fluxons in a long Josephson junction, using the continuum sine-Gordon model. We find that their classical relativistic motion leads to saturation branches in the I-V characteristic of a ring-shaped array. We then discuss the semiclassical quantization of the charge soliton, and show that it is consistent with the large kinetic inductance of the array. We study the dynamics of a quantum charge soliton in a ring-shaped array biased by an external flux through its center. If the dephasing length of the quantum charge soliton is larger than the circumference of the array, quantum phenomena like persistent current and coherent current oscillations are expected. As the characteristic width of the charge soliton is of the order of 100 μm, it is a macroscopic quantum object. We discuss the dephasing mechanisms which can suppress the quantum behavior of the charge soliton. © 1996 The American Physical Society.

  • Received 26 January 1996

DOI:https://doi.org/10.1103/PhysRevB.54.1234

©1996 American Physical Society

Authors & Affiliations

Ziv Hermon

  • Institut für Theoretische Festkörperphysik, Universität Karlsruhe, D-76128 Karlsruhe, Germany

Eshel Ben-Jacob

  • School of Physics and Astronomy, Raymond and Beverly Sackler Faculty of Exact Sciences, Tel-Aviv University, Ramat-Aviv, 69978 Tel-Aviv, Israel

Gerd Schön

  • Institut für Theoretische Festkörperphysik, Universität Karlsruhe, D-76128 Karlsruhe, Germany

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Issue

Vol. 54, Iss. 2 — 1 July 1996

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