Metastable Voltage States of Coupled Josephson Junctions
Yaroslav M. Blanter, Gerd Sch\"on, and Andrei D. Zaikin

TL;DR
This paper studies the voltage states of coupled Josephson junctions, revealing a staircase current-voltage characteristic with non-zero voltage plateaus, differing from single junction behavior, and explains recent experimental observations.
Contribution
It introduces a theoretical analysis of coupled Josephson junctions in a specific regime, explaining complex voltage behavior and connecting to experimental results.
Findings
Current-voltage staircase with non-zero voltage plateaus
Qualitative difference from single junction behavior
Theoretical explanation of recent experimental results
Abstract
We investigate a chain of capacitively coupled Josephson junctions in the regime where the charging energy dominates over the Josephson coupling, exploiting the analogy between this system and a multi-dimensional crystal. We find that the current-voltage characteristic of the current-driven chain has a staircase shape, beginning with an (insulating) non-zero voltage plateau at small currents. This behavior differs qualitatively from that of a single junction, which should show Bloch oscillations with vanishing dc voltage. The simplest system where this effect can be observed consists of three grains connected by two junctions. The theory explains the results of recent experiments on Josephson junction arrays.
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