Controlling large superconducting quantum processors

ORAL  · Invited

Abstract

Realizing commercially valuable quantum computations may require implementing quantum error correction on millions of qubits. Fulfilling this ambitious goal will take not only manufacturing high-performance quantum hardware at scale but engineering a control system that can reach its performance limits. In this talk, I will discuss some of the challenges associated with controlling large superconducting quantum processors, automated strategies for overcoming them, and an outlook for the future.

Publication: Optimizing quantum gates towards the scale of logical qubits
P. V. Klimov, et al. arXiv:2308.02321 (2023).

Suppressing quantum errors by scaling a surface code logical qubit
Google Quantum AI. Nature 614, 676–681 (2023).

Presenters

  • Paul Klimov

    • Google Quantum AI
    • Google AI, Quantum

Authors

  • Paul Klimov

    • Google Quantum AI
    • Google AI, Quantum