2026 31st Asia and South Pacific Design Automation Conference (ASP-DAC)(2026)
Graduate Institute of Electronics Engineering National Taiwan University
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摘要
The noisy intermediate-scale quantum (NISQ) computer significantly advances quantum computing technology. Due to the physical connectivity constraints of the NISQ device, its induced qubit mapping problem becomes more challenging. Recent works employ heuristics to achieve promising outcomes. However, they are limited to using only one type of center for graph matching, and their exhaustive traversal of the coupling graph results in high computation time. This paper strategically generates specific subgraphs during the initial mapping stage to reduce the solution space for the coupling graph. Then, we employ a bidirectional graph isomorphism search to improve initial mapping. In the main mapping stage, we develop an efficient search algorithm to minimize the number of inserted gates. Experimental results show that our method significantly outperforms the state-of-the-art work in reducing the number of inserted CNOT gates by 13.22% and the runtime by 19.61%.