A fidelity-aware hypergraph partitioner reduces estimated SWAP overhead and improves modeled circuit fidelity versus a standard heuristic on three small synthetic circuits.
Quantum computation and quantum in- formation
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A fidelity-driven approach to quantum circuit partitioning via weighted hypergraphs for noise-resilient computation
A fidelity-aware hypergraph partitioner reduces estimated SWAP overhead and improves modeled circuit fidelity versus a standard heuristic on three small synthetic circuits.