New QEC codes from cyclic codes over finite chain rings

IF 2.2 3区 物理与天体物理 Q1 PHYSICS, MATHEMATICAL
Xiaoyan Zhang, Peng Hu
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引用次数: 0

Abstract

In this paper, we provide three methods for constructing quantum error-correcting (QEC) codes via the Hermitian or Euclidean sums and hulls of cyclic codes over R, where \(R=\mathbb {F}_l[\gamma ]/\langle \gamma ^2\rangle \) with l to be prime power. We define two Gray maps \(\Psi _1\) and \(\Psi _2\), and study the Hermitian or Euclidean sums and hulls of cyclic codes over R. Under the Gray maps \(\Psi _1\) and \(\Psi _2\), two Gray map images are obtained for Hermitian or Euclidean sums of cyclic codes, respectively. Then, three new classes of QEC codes are obtained via two Gray map images and the Calderbank–Shor–Steane construction or Quantum construction X. Moreover, the QEC codes constructed are new in the sense that their parameters are different from all the previously known ones.

有限链环上循环码的QEC新码
本文给出了三种构造量子纠错(QEC)码的方法,即利用R上循环码的厄米和或欧几里得和和壳,其中\(R=\mathbb {F}_l[\gamma ]/\langle \gamma ^2\rangle \)以l为质数幂。我们定义了两个灰度图\(\Psi _1\)和\(\Psi _2\),并研究了r上循环码的厄米特和或欧几里得和和壳。在灰度图\(\Psi _1\)和\(\Psi _2\)下,分别得到了两个循环码的厄米特和或欧几里得和的灰度图图像。然后,通过两张灰度图图像和calderbank - shorr - steane构造或Quantum构造x,得到了三种新的QEC码,并且所构造的QEC码的参数不同于所有已知的QEC码,这是一种新的QEC码。
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 Information Processing
Quantum Information Processing 物理-物理:数学物理
CiteScore
4.10
自引率
20.00%
发文量
337
审稿时长
4.5 months
期刊介绍: Quantum Information Processing is a high-impact, international journal publishing cutting-edge experimental and theoretical research in all areas of Quantum Information Science. Topics of interest include quantum cryptography and communications, entanglement and discord, quantum algorithms, quantum error correction and fault tolerance, quantum computer science, quantum imaging and sensing, and experimental platforms for quantum information. Quantum Information Processing supports and inspires research by providing a comprehensive peer review process, and broadcasting high quality results in a range of formats. These include original papers, letters, broadly focused perspectives, comprehensive review articles, book reviews, and special topical issues. The journal is particularly interested in papers detailing and demonstrating quantum information protocols for cryptography, communications, computation, and sensing.
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