Parametric resonance in tunable superconducting cavities

Waltraut Wustmann and Vitaly Shumeiko
Phys. Rev. B 87, 184501 – Published 1 May 2013

Abstract

We develop a theory of parametric resonance in tunable superconducting cavities. The nonlinearity introduced by the superconducting quantum interference device (SQUID) attached to the cavity and damping due to connection of the cavity to a transmission line are taken into consideration. We study in detail the nonlinear classical dynamics of the cavity field below and above the parametric threshold for the degenerate parametric resonance, featuring regimes of multistability and parametric radiation. We investigate the phase-sensitive amplification of external signals on resonance, as well as amplification of detuned signals, and relate the amplifier performance to that of linear parametric amplifiers. We also discuss applications of the device for dispersive qubit readout. Beyond the classical response of the cavity, we investigate small quantum fluctuations around the amplified classical signals. We evaluate the noise power spectrum both for the internal field in the cavity and the output field. Other quantum-statistical properties of the noise are addressed such as squeezing spectra, second-order coherence, and two-mode entanglement.

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  • Received 28 February 2013

DOI:https://doi.org/10.1103/PhysRevB.87.184501

©2013 American Physical Society

Authors & Affiliations

Waltraut Wustmann and Vitaly Shumeiko

  • Microtechnology and Nanoscience, Chalmers University of Technology, S-41296 Göteborg, Sweden

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Issue

Vol. 87, Iss. 18 — 1 May 2013

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