Microwave bifurcation of a Josephson junction: Embedding-circuit requirements

Manucharyan, V. E. ; Boaknin, E. ; Metcalfe, M. ; Vijay, R. ; Siddiqi, I. ; Devoret, M. (2007) Microwave bifurcation of a Josephson junction: Embedding-circuit requirements Physical Review B: Condensed Matter and Materials Physics, 76 (1). ISSN 1098-0121

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Official URL: https://doi.org/10.1103/PhysRevB.76.014524

Related URL: http://dx.doi.org/10.1103/PhysRevB.76.014524

Abstract

A Josephson tunnel junction which is rf driven near a dynamical bifurcation point can amplify quantum signals. However, the bifurcation point will exist robustly only if the electrodynamic environment of the junction meets certain criteria. We develop a general formalism for dealing with the nonlinear dynamics of a 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 needs to present a resonance at a particular frequency ωR , with the quality factor Q of the resonance and the participation ratio p of the junction satisfying Qp≫1 , and (b) the drive frequency should be low frequency detuned away from ωR by more than 3ωR/(2Q).

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