Josephson junction with magnetic-field tunable current-phase relation

Abstract

We consider a 0-π Josephson junction consisting of asymmetric 0 and π regions of different lengths L0 and Lπ having different critical current densities jc,0 and jc,π. If both segments are rather short, the whole junction can be described by an effective current-phase relation for the spatially averaged phase , which includes the usual term (), a negative second harmonic term (2) as well as the unusual term H tunable by magnetic field H. Thus one obtains an electronically tunable current-phase relation. At H=0 this corresponds to the Josephson junction.

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