Dependency-Aware Compilation for Surface Code Quantum Architectures
November 29, 2023 Β· Declared Dead Β· π Proc. ACM Program. Lang.
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Authors
Abtin Molavi, Amanda Xu, Swamit Tannu, Aws Albarghouthi
arXiv ID
2311.18042
Category
quant-ph: Quantum Computing
Cross-listed
cs.PL
Citations
12
Venue
Proc. ACM Program. Lang.
Last Checked
5 months ago
Abstract
Practical applications of quantum computing depend on fault-tolerant devices with error correction. Today, the most promising approach is a class of error-correcting codes called surface codes. We study the problem of compiling quantum circuits for quantum computers implementing surface codes. Optimal or near-optimal compilation is critical for both efficiency and correctness. The compilation problem requires (1) mapping circuit qubits to the device qubits and (2) routing execution paths between interacting qubits. We solve this problem efficiently and near-optimally with a novel algorithm that exploits the dependency structure of circuit operations to formulate discrete optimization problems that can be approximated via simulated annealing, a classic and simple algorithm. Our extensive evaluation shows that our approach is powerful and flexible for compiling realistic workloads.
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