Universal control of an oscillator with dispersive coupling to a qubit

POSTER

Abstract

We investigate quantum control of an oscillator mode that dispersively couples to an ancillary qubit. In the strong dispersive regime, we may drive the qubit conditioned on the selected number states of the oscillator, which enables selective number-dependent arbitrary phase (SNAP) operation and universal control of the oscillator. We provide explicit constructions for arbitrary state preparation and arbitrary unitary operation of the oscillator. Moreover, using optimal control techniques, we develop fast and efficient pulse sequences to achieve high fidelity unitary gates. This universal control scheme of the oscillator can readily be implemented using superconducting circuits.

*Supported by ARO, AFOSR MURI, Sloan Foundation, and Packard Foundation.

Authors

  • Stefan Krastanov

    • Yale University
  • Reinier Heeres

    • Yale University
  • Philip Reinhold

    • Yale University
  • Victor V. Albert

    • Yale University
  • Chao Shen

    • Yale University
  • Chang-Ling Zou

    • Yale University
  • Brian Vlastakis

    • Yale University
  • Robert Schoelkopf

    • Yale University
  • Liang Jiang

    • Yale University