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Robust Control in High-Dimensional Hilbert Spaces

FOCUS · N71 · ID: 1067494






Presentations

  • Fast and Robust Geometric Two-Qubit Gates for Superconducting Qubits and Beyond

    ORAL

    Publication: F. Setiawan, Peter Groszkowski, and Aashish A. Clerk, Fast and Robust Geometric Two-Qubit Gates for Superconducting Qubits and Beyond, arXiv:2208.04249

    Presenters

    • Fnu Setiawan

      University of Chicago; Riverlane Research, Inc., University of Chicago

    Authors

    • Fnu Setiawan

      University of Chicago; Riverlane Research, Inc., University of Chicago

    • Peter Groszkowski

      Oak Ridge National Laboratory, University of Chicago; Oak Ridge National Laboratory

    • Aashish A Clerk

      University of Chicago

    View abstract →

  • Universally robust control sequences for high-dimensional superconducting qubits

    ORAL

    Presenters

    • Madeline K Taylor

      University of California, Los Angeles

    Authors

    • Madeline K Taylor

      University of California, Los Angeles

    • Kangdi Yu

      University of California, Los Angeles

    • Murat C Sarihan

      University of California, Los Angeles

    • Jin Ho Kang

      University of California, Los Angeles, UCLA

    • Ananyo Banerjee

      University of California, Los Angeles, University of California Los Angeles

    • Cody S Fan

      University of California, Los Angeles

    • Daniel A Lidar

      University of Southern California

    • Chee Wei Wong

      University of California, Los Angeles

    View abstract →

  • Pulse-level control and dynamics of qudit gates

    ORAL

    Presenters

    • Joshua A Job

      Lockheed Martin - Palo Alto, Lockheed Martin, Lockheed Martin - Space

    Authors

    • A. Baris Ozguler

      Fermilab

    • Joshua A Job

      Lockheed Martin - Palo Alto, Lockheed Martin, Lockheed Martin - Space

    View abstract →

  • Realizing high-fidelity qudit gates on a transmon via optimal control

    ORAL

    Presenters

    • Lennart Maximilian Seifert

      University of Chicago

    Authors

    • Lennart Maximilian Seifert

      University of Chicago

    • Ziqian Li

      University of Chicago

    • Jason Chadwick

      University of Chicago

    • Tanay Roy

      University of Chicago

    • Andrew Litteken

      University of Chicago

    • Jonathan M Baker

      University of Chicago

    • David Schuster

      University of Chicago, Stanford University

    • Frederic T Chong

      University of Chicago, Department of Computer Science, University of Chicago, ColdQuanta Inc.

    View abstract →

  • Simulating neutrino oscillations with a transmon qutrit.

    ORAL

    Presenters

    • Vinh San Dinh

      Northwestern University

    Authors

    • Vinh San Dinh

      Northwestern University

    • Jens Koch

      Northwestern University

    • Matthew J Reagor

      Rigetti Quantum Computing, Rigetti, Rigetti Computing

    • Silvia Zorzetti

      Fermilab

    • Alexander Romanenko

      Fermilab

    • Joshua A Job

      Lockheed Martin - Palo Alto, Lockheed Martin, Lockheed Martin - Space

    View abstract →

  • Direct pulse level compilation of arbitrary quantum logic gates on superconducting qutrits

    ORAL

    Publication: Y. Cho, K. Beck, A. R. Castelli, K. A. Wendt, B. Evert, M. Reagor and J. L DuBois, 'Direct pulse level compilation of arbitrary quantum logic gates on superconducting qutrits' in preparation (2022)

    Presenters

    • Yujin Cho

      Lawrence Livermore National Laboratory, Lawrence Livermore National Lab

    Authors

    • Yujin Cho

      Lawrence Livermore National Laboratory, Lawrence Livermore National Lab

    • Kristin M Beck

      Lawrence Livermore National Laboratory

    • Alessandro R Castelli

      Lawrence Livermore National Laboratory

    • Kyle A Wendt

      Lawrence Livermore National Laboratory, Lawrence Livermore Natl Lab

    • Bram Evert

      Rigetti Computing, Rigetti Quantum Computing

    • Matthew J Reagor

      Rigetti Quantum Computing, Rigetti, Rigetti Computing

    • Jonathan L DuBois

      Lawrence Livermore National Laboratory, Lawrence Livermore National Lab

    View abstract →