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Graph-Based Pulse Representation for Diverse Quantum Control Hardware

Publication ,  Conference
Dalvi, AS; Riesebos, L; Whitlow, J; Brown, KR
Published in: Proceedings IEEE Quantum Week 2024 Qce 2024
January 1, 2024

Pulse-level control of quantum systems is critical for enabling gate implementations, calibration procedures, and Hamiltonian evolution which fundamentally are not supported by the traditional circuit model. This level of control necessitates both efficient generation and representation. In this work, we propose pulselib - a graph-based pulse-level representation. A graph structure, with nodes consisting of parametrized fundamental waveforms, stores all the high-level pulse information while staying flexible for translation into hardware-specific in-puts. We motivate pulselib by comparing its feature set and information flow through the pulse-layer of the software stack with currently available pulse representations. We describe the architecture of this proposed representation that mimics the abstract syntax tree (AST) model from classical compilation pipelines. Finally, we outline applications like trappedion-specific gate and shelving pulse schemes whose constraints and implementation can be written and represented due to pulselib's graph-based architecture.

Duke Scholars

Published In

Proceedings IEEE Quantum Week 2024 Qce 2024

DOI

Publication Date

January 1, 2024

Volume

1

Start / End Page

897 / 908
 

Citation

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Dalvi, A. S., Riesebos, L., Whitlow, J., & Brown, K. R. (2024). Graph-Based Pulse Representation for Diverse Quantum Control Hardware. In Proceedings IEEE Quantum Week 2024 Qce 2024 (Vol. 1, pp. 897–908). https://doi.org/10.1109/QCE60285.2024.00109
Dalvi, A. S., L. Riesebos, J. Whitlow, and K. R. Brown. “Graph-Based Pulse Representation for Diverse Quantum Control Hardware.” In Proceedings IEEE Quantum Week 2024 Qce 2024, 1:897–908, 2024. https://doi.org/10.1109/QCE60285.2024.00109.
Dalvi AS, Riesebos L, Whitlow J, Brown KR. Graph-Based Pulse Representation for Diverse Quantum Control Hardware. In: Proceedings IEEE Quantum Week 2024 Qce 2024. 2024. p. 897–908.
Dalvi, A. S., et al. “Graph-Based Pulse Representation for Diverse Quantum Control Hardware.” Proceedings IEEE Quantum Week 2024 Qce 2024, vol. 1, 2024, pp. 897–908. Scopus, doi:10.1109/QCE60285.2024.00109.
Dalvi AS, Riesebos L, Whitlow J, Brown KR. Graph-Based Pulse Representation for Diverse Quantum Control Hardware. Proceedings IEEE Quantum Week 2024 Qce 2024. 2024. p. 897–908.

Published In

Proceedings IEEE Quantum Week 2024 Qce 2024

DOI

Publication Date

January 1, 2024

Volume

1

Start / End Page

897 / 908