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Dynamically Enhancing Qubit-Photon Interactions with Antisqueezing

  • M. Villiers
  • , W. C. Smith
  • , A. Petrescu
  • , A. Borgognoni
  • , M. Delbecq
  • , A. Sarlette
  • , M. Mirrahimi
  • , P. Campagne-Ibarcq
  • , T. Kontos
  • , Z. Leghtas
  • Center for Atomic-scale Materials Physics (CAMP)

Research output: Contribution to journalArticlepeer-review

17 Citations (Scopus)

Abstract

The interaction strength of an oscillator to a qubit grows with the oscillator's vacuum field fluctuations. The well-known degenerate parametric oscillator has revived interest in the regime of strongly detuned squeezing, where its eigenstates are squeezed Fock states. Owing to the amplified field fluctuations in the antisqueezed quadrature, it was recently proposed that squeezing this oscillator would dynamically boost qubit-photon interactions. In a superconducting circuit experiment, we observe a twofold increase in the dispersive interaction between a qubit and an oscillator at 5.5 dB of squeezing, demonstrating in situ dynamical control of qubit-photon interactions. This work initiates the experimental coupling of oscillators of squeezed photons to qubits, and cautiously motivates their dissemination in experimental platforms seeking enhanced interactions.

Original languageEnglish
Article number020306
JournalPRX Quantum
Volume5
Issue number2
DOIs
Publication statusPublished - 1 Apr 2024
Externally publishedYes

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