最优、几乎最优的少权线性码及相关量子码

IF 2.9 3区 计算机科学 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS
Conghui Xie;Hao Chen;Haiyan Zhou;Yang Li;Huimin Lao
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引用次数: 0

摘要

在IEEE信息论学报上发表的八篇论文中,构造了无限族的最优少权二进制和q元线性码,并确定了它们的权分布。这些码是满足Griesmer界的线性码。我们指出,在这些论文中构造的许多Griesmer码并不是新的。它们实际上是1965年发明的solomon - stiff密码。因此,本文确定了一些特殊的二进制或q-ary solomon - stiff码的权值分布。采用与Solomon-Stiffler码相似的几何方法,构造了10个无限族的接近Griesmer界的二元、三元和四元少权、最优、几乎最优和近最优线性码,并确定了它们的权分布。这些线性码具有高达5个的Griesmer阳性缺陷,因此不具有solomon - stiff码和来自minihyperers的Griesmer码。此外,与Grassl的量子码表相比,许多最优、最优和几乎最优的小长度量子码都是用与二进制Solomon-Stiffler码相同的几何方法构造的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal, Almost Optimal Few-Weight Linear Codes and Related Quantum Codes
In eight published papers in IEEE Transactions on Information Theory, infinite families of optimal few-weight binary and q-ary linear codes were constructed and their weight distributions were determined. These codes are linear codes meeting the Griesmer bound. We indicate that many Griesmer codes constructed in these papers are not new. They are actually Solomon-Stiffler codes invented in 1965. Therefore weight distributions of some special binary or q-ary Solomon-Stiffler codes were determined in the papers mentioned above. From a similar geometric approach as Solomon-Stiffler codes, we construct ten infinite families of binary, ternary and quaternary few-weight, optimal, almost optimal and near-optimal linear codes close to the Griesmer bound and their weight distributions are determined. These linear codes have positive Griesmer defects up to five, and thus not Solomon-Stiffler codes and Griesmer codes from minihypers. Moreover, many optimal, best known and almost optimal quantum codes of small lengths, comparing with Grassl’s table on quantum codes, are constructed from the same geometric approach as binary Solomon-Stiffler codes.
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来源期刊
IEEE Transactions on Information Theory
IEEE Transactions on Information Theory 工程技术-工程:电子与电气
CiteScore
5.70
自引率
20.00%
发文量
514
审稿时长
12 months
期刊介绍: The IEEE Transactions on Information Theory is a journal that publishes theoretical and experimental papers concerned with the transmission, processing, and utilization of information. The boundaries of acceptable subject matter are intentionally not sharply delimited. Rather, it is hoped that as the focus of research activity changes, a flexible policy will permit this Transactions to follow suit. Current appropriate topics are best reflected by recent Tables of Contents; they are summarized in the titles of editorial areas that appear on the inside front cover.
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