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Fast Reliable Automatic Parallel Calibration of High Fidelity CZ Gates on Large Superconducting Quantum Processing Units

ORAL

Abstract

As superconducting Quantum Processing Units (QPU) grow larger, automated and reliable calibration of high-fidelity two-qubit remains one of the main challenges. Here, we demonstrate our two-qubit gate calibration strategy that parallelizes across all the qubits and leverages fast reset to speed-up the calibration. To increase the accuracy of the calibration, we leverage techniques such as error-amplification and refocusing of the conditional phase. The calibration is designed to be fully automatic and is executed in a specific way, making the calibration duration independent of the size of the QPU. We demonstrate a two-qubit gate calibration procedure that executes in less than 10 minutes on a large quantum processor and has been shown to result in CZ-gate fidelities above 99.9%.

Presenters

  • Jakub Mrożek

    IQM Quantum Computers

Authors

  • Jakub Mrożek

    IQM Quantum Computers

  • Fabian Marxer

    IQM Quantum Computers

  • Antti Vepsalainen

    IQM Quantum Computers

  • Eric Hyyppä

    IQM Quantum Computers

  • Julia Lamprich

    IQM Quantum Computers

  • Zheming Gao

    IQM Quantum Computers

  • Alejandro Gómez Frieiro

    IQM Quantum Computers

  • Alpo Välimaa

    IQM Quantum Comptuers, IQM Quantum Computers

  • Jeffrey Chan

    IQM Quantum Computers

  • Sinan Inel

    IQM Quantum Computers

  • Nicola Wurz

    IQM Quantum Computers

  • Jaap J Wesdorp

    IQM Quantum Computers

  • Nizar Lethif

    IQM Quantum Computers

  • Ivan Takmakov

    IQM Quantum Computers

  • Francesca Tosto

    IQM Quantum Computers

  • Matti Partanen

    IQM Quantum Computers

  • Michael Renger

    IQM Quantum Computers

  • Rohit Beriwal

    IQM Quantum Computers

  • Daria Gusenkova

    IQM Quantum Computers

  • Shan W Jolin

    IQM Quantum Computers

  • Janos Adam

    IQM Quantum Computers

  • Mykhailo Savytskyi

    IQM Quantum Computers

  • Johannes Heinsoo

    IQM Quantum Computers

  • Olexiy Fedorets

    IQM Quantum Computers