English

Period-tripling subharmonic oscillations in a driven superconducting resonator

Quantum Physics 2017-11-15 v3 Mesoscale and Nanoscale Physics

Abstract

We have observed period-tripling subharmonic oscillations, in a superconducting coplanar waveguide resonator operated in the quantum regime, kBTωk_B T \ll \hbar\omega. The resonator is terminated by a tunable inductance that provides a Kerr-type nonlinearity. We detected the output field quadratures at frequencies near the fundamental mode, ω/2π5\omega/2\pi \sim 5\,GHz, when the resonator was driven by a current at 3ω3\omega with an amplitude exceeding an instability threshold. The output radiation was red-detuned from the fundamental mode. We observed three stable radiative states with equal amplitudes and phase-shifted by 120120^\circ. The downconversion from 3ω3\omega to ω\omega is strongly enhanced by resonant excitation of the second mode of the resonator, and the cross-Kerr effect. Our experimental results are in quantitative agreement with a model for the driven dynamics of two coupled modes.

Keywords

Cite

@article{arxiv.1707.04093,
  title  = {Period-tripling subharmonic oscillations in a driven superconducting resonator},
  author = {Ida-Maria Svensson and Andreas Bengtsson and Philip Krantz and Jonas Bylander and Vitaly Shumeiko and Per Delsing},
  journal= {arXiv preprint arXiv:1707.04093},
  year   = {2017}
}
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