Sparse Blossom: correcting a million errors per core second with minimum-weight matching

IF 5.1 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Quantum Pub Date : 2025-01-20 DOI:10.22331/q-2025-01-20-1600
Oscar Higgott, Craig Gidney
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Abstract

In this work, we introduce a fast implementation of the minimum-weight perfect matching (MWPM) decoder, the most widely used decoder for several important families of quantum error correcting codes, including surface codes. Our algorithm, which we call sparse blossom, is a variant of the blossom algorithm which directly solves the decoding problem relevant to quantum error correction. Sparse blossom avoids the need for all-to-all Dijkstra searches, common amongst MWPM decoder implementations. For 0.1% circuit-level depolarising noise, sparse blossom processes syndrome data in both $X$ and $Z$ bases of distance-17 surface code circuits in less than one microsecond per round of syndrome extraction on a single core, which matches the rate at which syndrome data is generated by superconducting quantum computers. Our implementation is open-source, and has been released in version 2 of the PyMatching library.
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Sparse Blossom:利用最小权重匹配,每核心秒纠正一百万个错误
在这项研究中,我们介绍了最小权完全匹配(MWPM)解码器的快速实现方法,这是包括表面码在内的多个重要量子纠错码系列最广泛使用的解码器。我们的算法被称为稀疏开花算法(sparse blossom),它是开花算法的一种变体,可以直接解决与量子纠错相关的解码问题。稀疏开花算法避免了 MWPM 解码器实现中常见的全对全 Dijkstra 搜索。对于 0.1% 的电路级去极化噪声,稀疏开花在单核心上处理距离-17 表面编码电路的 $X$ 和 $Z$ 基中的综合征数据,每轮综合征提取的时间不到一微秒,与超导量子计算机生成综合征数据的速度相当。我们的实现是开源的,已在 PyMatching 库的第 2 版中发布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Quantum
Quantum Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
9.20
自引率
10.90%
发文量
241
审稿时长
16 weeks
期刊介绍: Quantum is an open-access peer-reviewed journal for quantum science and related fields. Quantum is non-profit and community-run: an effort by researchers and for researchers to make science more open and publishing more transparent and efficient.
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