TR2025-070

Pulse Design of Baseband Flux Control for Adiabatic Controlled-Phase Gates in Superconducting Circuits


    •  Ding, Q., Oppenheim, A.V., Boufounos, P.T., Gustavsson, S., Grover, J.A., Baran, T.A., Oliver, W.D., "Pulse Design of Baseband Flux Control for Adiabatic Controlled-Phase Gates in Superconducting Circuits", Physical Review Applied, June 2025.
      BibTeX TR2025-070 PDF
      • @article{Ding2025jun,
      • author = {Ding, Qi and Oppenheim, Alan V. and Boufounos, Petros T. and Gustavsson, Simon and Grover, Jeffrey A. and Baran, Thomas A. and Oliver, William D.},
      • title = {{Pulse Design of Baseband Flux Control for Adiabatic Controlled-Phase Gates in Superconducting Circuits}},
      • journal = {Physical Review Applied},
      • year = 2025,
      • month = jun,
      • url = {https://www.merl.com/publications/TR2025-070}
      • }
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  • Research Areas:

    Applied Physics, Signal Processing

Abstract:

Despite progress towards achieving low error rates with superconducting qubits, error-prone two- qubit gates remain a bottleneck for realizing large-scale quantum computers. Therefore, a systematic framework to design high-fidelity gates becomes imperative. One type of two-qubit gate in super- conducting qubits is the controlled-phase (CPHASE) gate, which utilizes a conditional interaction between higher energy levels of the qubits controlled by a baseband flux pulse on one of the qubits or a tunable coupler. In this work, we study an adiabatic implementation of CPHASE gates and formulate the design of the control trajectory for the gate as a pulse-design problem. We show in simulation that the Chebyshev-based trajectory can, in certain cases, enable gates with gate infidelity lower by an average of 23.3% when compared to the widely used Slepian-based trajectory.

 

  • Related Publication

  •  Ding, Q., Oppenheim, A.V., Boufounos, P.T., Gustavsson, S., Grover, J.A., Baran, T.A., Oliver, W.D., "Pulse Design of Baseband Flux Control for Adiabatic Controlled-Phase Gates in Superconducting Circuits", arXiv, July 2024.
    BibTeX arXiv
    • @article{Ding2024jul,
    • author = {Ding, Qi and Oppenheim, Alan V. and Boufounos, Petros T. and Gustavsson, Simon and Grover, Jeffrey A. and Baran, Thomas A. and Oliver, William D.},
    • title = {{Pulse Design of Baseband Flux Control for Adiabatic Controlled-Phase Gates in Superconducting Circuits}},
    • journal = {arXiv},
    • year = 2024,
    • month = jul,
    • url = {https://arxiv.org/abs/2407.02722}
    • }