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Oral: Towards autonomous quantum error correction in a four-photon Kerr parametric oscillator

ORAL

Abstract

This presentation discusses an autonomous quantum error correction scheme for a rotational symmetric bosonic code in a four-photon Kerr parametric oscillator (KPO). Our scheme is the simplest possible error correction scheme that can correct single-photon loss using a single continuous microwave tone. We also introduce an unconditional reset scheme that requires one more continuous microwave tone in addition to that for the error correction. The key properties underlying this simplicity are engineering the degeneracy in the energy level structure of a four-photon KPO and employing an ancilla resonator. For experimental implementation, we make a KPO driven by a three- or four-photon pump and directly measure the Wigner function of its eigenstates.

Publication: Sangil Kwon, Shohei Watabe, and Jaw-Shen Tsai, npj Quantum Inf. 8, 40 (2022)

Presenters

  • Sangil Kwon

    Tokyo University of Science

Authors

  • Sangil Kwon

    Tokyo University of Science

  • Toshiaki Nagase

    Tokyo University of Science

  • Daisuke Hoshi

    Tokyo University of Science

  • Hiroto Mukai

    RIKEN

  • Shohei Watabe

    Shibaura Institute of Technology

  • Fumiki Yoshihara

    Tokyo University of Science

  • Jaw-Shen Tsai

    NEC Laboratories America, Inc. (NEC Labs)