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Theory of reflection spectroscopy for superconducting quantum parametrons

POSTER

Abstract

Superconducting parametrons in the single-photon Kerr regime, also called KPOs, have been attracting increasing attention in terms of their applications to quantum computations. Theory of spectroscopy of prametrons is needed for obtaining information such as energy level structure and coupling strength between the energy levels from experiments. In this talk, we report the results of our theoretical study on the reflection spectroscopy of superconducting parametrons. We show formulae of the reflection coefficient, the nominal external and internal decay rates. We present that the difference of the populations of energy levels manifests itself as a dip or peak in the amplitude of the reflection coefficient, and one can directly extract the coupling strength between the energy levels by measuring the nominal decay rates when the pump field is sufficiently large.

Publication: https://doi.org/10.1088/1367-2630/ac21e1

Presenters

  • Shumpei Masuda

    National Institute of Advanced Industrial Science and Technology

Authors

  • Shumpei Masuda

    National Institute of Advanced Industrial Science and Technology

  • Aiko Yamaguchi

    NEC Corporation

  • Tomohiro Yamaji

    NEC Corporation

  • Tsuyoshi Yamamoto

    NEC Corporation

  • Toyofumi Ishikawa

    National Institute of Advanced Industrial Science and Technology

  • Yuichiro Matsuzaki

    AIST, Research Center for Emerging Computing Technologies, National institute of Advanced Industrial Science and Technology (AIST), National Institute of Advanced Industrial Science and Technology

  • Shiro Kawabata

    National Institute of Advanced Industrial Science and Technology (AIST), National Institute of Advanced Industrial Science and Technology