arXiv · cond-mat/0612576
RF bifurcation of a Josephson junction: microwave embedding circuit requirements
Abstract
A Josephson tunnel junction which is RF-driven near a dynamical bifurcation point can amplify quantum signals. The bifurcation point will exist robustly only if the electrodynamic environment of the junction meets certain criteria. In this article we develop a general formalism for dealing with the non-linear dynamics of Josephson junction embedded in an arbitrary microwave circuit. We find sufficient conditions for the existence of the bifurcation regime: a) the embedding impedance of the junction need to present a resonance at a particular frequency $ω_{R}$, with the quality factor $Q$ of the resonance and the participation ratio $p$ of the junction satisfying $Qp\gg 1$, b) the drive frequency should be low frequency detuned away from $ω_{R}$ by more than $\sqrt{3}ω_{R}/(2Q)$.
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V. E. Manucharyan, E. Boaknin, M. Metcalfe, R. Vijay, I. Siddiqi, M. H. Devoret. 2006-12-22. RF bifurcation of a Josephson junction: microwave embedding circuit requirements. https://doi.org/10.1103/physrevb.76.014524
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