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DOE OSTI · 3030437

Repositioning Quantum Cellular Automata for Dependable Quantum-Classical Systems

Abstract

Quantum Cellular Automata (QCA) provides a structured model of distributed quantum computation with inherent locality and regularity properties that are suited to dependable execution. However, QCA remain largely absent from discussions on reproducibility, fault management, and orchestration in heterogeneous quantum-classical systems. We propose a dual-axis framework that situates QCA within both computation and physical realizability, revealing regions where robust, scalable, and hardware-constrained quantum dynamics may reside. By revisiting prior results through the lens of reproducibility and architecture resilience, we suggest that QCA offers a potential substrate for benchmarking and system-level co-design.

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BibTeXRIS

Stapleton, Nicholas [ORNL] (ORCID:0000000335305325), Leyton Ortega, Vicente [ORNL]. 2025-08-01. Repositioning Quantum Cellular Automata for Dependable Quantum-Classical Systems. https://doi.org/10.1109/qce65121.2025.10333

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