Laser annealing for two-qubit gate error reduction in fixed frequency processor architectures

ORAL

Abstract

Fixed-frequency transmon qubits are attractive due to noise immunity and high coherence. However, as quantum processors are scaled, frequency crowding resulting from level degeneracies reduces two-qubit gate fidelity [1]. We implement a scalable laser-based frequency trimming technique that has been implemented on processors at the 65-qubit scale, enabling low-error gates with average fidelities approaching 99%. We discuss ultimate tuning precision of the method and its consequences for processor scaling.

[1] J. Hertzberg, S. Rosenblatt, J. Chavez, E. Magesan, J. Smolin, J. B. Yau, V. Adiga, M. Brink, E. Zhang, J. Orcutt, J. Chow, “Effects of qubit frequency crowding on scalable quantum processors.” Bulletin of the American Physical Society. 65, Mar 5, 2020

*We acknowledge support for modeling work under IARPA under Contract No. W911NF-16-0114

Presenters

  • Eric Zhang

    • IBM TJ Watson Research Center

Authors

  • Eric Zhang

    • IBM TJ Watson Research Center
  • Srikanth Srinivasan

    • IBM Quantum
    • IBM TJ Watson Research Center
  • Neereja Sundaresan

    • IBM TJ Watson Research Center
  • Daniela F Bogorin

    • IBM TJ Watson Research Center
  • Yves Martin

    • IBM TJ Watson Research Center
  • Jared B Hertzberg

    • IBM TJ Watson Research Center
  • John Timmerwilke

    • IBM TJ Watson Research Center
  • Emily Pritchett

    • IBM TJ Watson Research Center
  • Jeng-Bang Yau

    • IBM TJ Watson Research Center
  • Xinhui Wang

    • IBM TJ Watson Research Center
  • William Landers

    • IBM TJ Watson Research Center
  • Eric Lewandowski

    • IBM TJ Watson Research Center
  • Adinath Narasgond

    • IBM TJ Watson Research Center
  • Sami Rosenblatt

    • IBM Quantum, T.J. Watson Research Center
    • IBM TJ Watson Research Center
  • George Keefe

    • IBM TJ Watson Research Center
    • IBM Quantum
  • Isaac Lauer Lauer

    • IBM TJ Watson Research Center
  • Mary Beth Rothwell

    • IBM TJ Watson Research Center
  • Oliver E. Dial

    • IBM TJ Watson Research Center
    • IBM Quantum
    • Massachusetts Institute of Technology MIT
  • Jason Orcutt

    • IBM TJ Watson Research Center
  • Markus Brink

    • IBM TJ Watson Research Center
  • Jerry Chow

    • IBM Quantum
    • IBM TJ Watson Research Center