Shock wave in series connected Josephson transmission line: Theoretical foundations and effects of resistive elements

Fuente: arXiv
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Auteur principal: Kogan, Eugene
Format: Preprint
Publié: 2021
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author Kogan, Eugene
author_facet Kogan, Eugene
contents We analytically study shock wave in the Josephson transmission line (JTL) in the presence of ohmic dissipation. When ohmic resistors shunt the Josephson junctions (JJ) or are introduced in series with the ground capacitors the shock is broadened. When ohmic resistors are in series with the JJ, the shock remains sharp, same as it was in the absence of dissipation. In all the cases considered, ohmic resistors don't influence the shock propagation velocity. We study an alternative to the shock wave - an expansion fan - in the framework of the simple wave approximation for the dissipationless JTL and formulate the generalization of the approximation for the JTL with ohmic dissipation.
format Preprint
id arxiv_https___arxiv_org_abs_2102_01427
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Shock wave in series connected Josephson transmission line: Theoretical foundations and effects of resistive elements
Kogan, Eugene
Superconductivity
Systems and Control
Pattern Formation and Solitons
Applied Physics
Classical Physics
We analytically study shock wave in the Josephson transmission line (JTL) in the presence of ohmic dissipation. When ohmic resistors shunt the Josephson junctions (JJ) or are introduced in series with the ground capacitors the shock is broadened. When ohmic resistors are in series with the JJ, the shock remains sharp, same as it was in the absence of dissipation. In all the cases considered, ohmic resistors don't influence the shock propagation velocity. We study an alternative to the shock wave - an expansion fan - in the framework of the simple wave approximation for the dissipationless JTL and formulate the generalization of the approximation for the JTL with ohmic dissipation.
title Shock wave in series connected Josephson transmission line: Theoretical foundations and effects of resistive elements
topic Superconductivity
Systems and Control
Pattern Formation and Solitons
Applied Physics
Classical Physics
url https://arxiv.org/abs/2102.01427