Weighted Range-Constrained Ising-Model Decoder for Quantum Error Correction
Xinyi Guo, Hiromitsu Awano, Takashi Sato
摘要
Ising model-based Quantum Error Correction decoders reduce topological complexity compared to classical decoders. However, the SOTA Ising decoder has a higher time complexity than union-find (UF) and a lower threshold than minimum-weight perfect-matching (MWPM). We propose the Weighted Range-Constrained Ising Model-Based (WRIM) decoder. WRIM uses a polygonal region to enclose flipped syndromes, ensuring the coverage of all potential error chains while optimizing coupling and external field coefficients. WRIM reduces the variable count by , achieves microsecondlevel decoding, and has a worst-case time complexity of , outperforming UF. WRIM exhibits threshold behavior up to 10.7, surpassing the MWPM’s highest reported threshold.
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