Subsystem CSS codes, a tighter stabilizer-to-CSS mapping, and Goursat’s Lemma

IF 5.1 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Quantum Pub Date : 2024-07-10 DOI:10.22331/q-2024-07-10-1403
Michael Liaofan Liu, Nathanan Tantivasadakarn, Victor V. Albert
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Abstract

The CSS code construction is a powerful framework used to express features of a quantum code in terms of a pair of underlying classical codes. Its subsystem extension allows for similar expressions, but the general case has not been fully explored. Extending previous work of Aly, Klappenecker, and Sarvepalli [5], we determine subsystem CSS code parameters, express codewords, and develop a Steane-type decoder using only data from the two underlying classical codes. Generalizing a result of Kovalev and Pryadko [55], we show that any subsystem stabilizer code can be "doubled" to yield a subsystem CSS code with twice the number of physical, logical, and gauge qudits and up to twice the code distance. This mapping preserves locality and is tighter than the Majorana-based mapping of Bravyi, Terhal, and Leemhuis [19]. Using Goursat's Lemma, we show that every subsystem stabilizer code can be constructed from two nested subsystem CSS codes satisfying certain constraints, and we characterize subsystem stabilizer codes based on the nested codes' properties.
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子系统 CSS 代码、更严密的稳定器到 CSS 映射以及 Goursat 判例
CSS 代码结构是一个强大的框架,用于用一对底层经典代码来表达量子代码的特征。它的子系统扩展允许类似的表达,但一般情况尚未得到充分探索。我们扩展了 Aly、Klappenecker 和 Sarvepalli [5] 以前的工作,确定了子系统 CSS 代码参数,表达了码字,并开发了一个 Steane 型解码器,只使用来自两个底层经典代码的数据。根据 Kovalev 和 Pryadko [55] 的一个结果,我们证明任何子系统稳定器代码都可以 "加倍",以产生具有两倍物理、逻辑和规量子位数以及两倍代码距离的子系统 CSS 代码。这种映射保留了局域性,比布拉维伊、特哈尔和莱姆休斯基于马约拉纳的映射更紧密[19]。利用古萨特定理,我们证明了每个子系统稳定器代码都可以由两个满足特定约束条件的嵌套子系统 CSS 代码构造而成,并根据嵌套代码的特性描述了子系统稳定器代码的特征。
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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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