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Studying non-equilibrium quasiparticle related errors on superconducting qubits through gap engineering

ORAL

Abstract

Non-equilibrium quasiparticles have emerged as a significant source of decoherence in superconducting qubits, prompting a need for effective strategies to mitigate quasiparticle loss. In this study, we delve into innovative chip geometries designed to mitigate non-equilibrium quasiparticle related noise, testing the efficacy of these designs through both non-correlated and correlated charge noise experiments. Additionally, we discuss various fabrication techniques for these chips, informed by microscopic quasiparticle diffusion equations derived from real-time Usadel formalism. This comprehensive approach aims to enhance the performance and reliability of superconducting qubit systems.

Presenters

  • Ugur Alyanak

    Fermi National Accelerator Laboratory (Fermilab)

Authors

  • Ugur Alyanak

    Fermi National Accelerator Laboratory (Fermilab)

  • Ziwen Huang

    Fermi National Accelerator Laboratory (Fermilab)

  • Wei-Ting Lin

    Louisiana State University

  • Xinyuan You

    Fermi National Accelerator Laboratory (Fermilab), Fermilab

  • Alexander Romanenko

    Fermi National Accelerator Laboratory, Fermi National Accelerator Laboratory (Fermilab), Fermilab

  • Anna Grassellino

    Fermi National Accelerator Laboratory, Fermi National Accelerator Laboratory (Fermilab), Fermilab

  • Young-Kee Kim

    University of Chicago

  • Shaojiang Zhu

    Fermi National Accelerator Laboratory (Fermilab), Fermilab, Fermi National Accelerator Laboratory