New quantum codes constructed from quaternary BCH codes

被引:0
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作者
Gen Xu
Ruihu Li
Luobin Guo
Yuena Ma
机构
[1] Air Force Engineering University,Department of mathematics, College of Science
来源
关键词
BCH code; Maximal designed distance; Quantum error-correcting code; Combinatorial construction; Finite Gilbert–Varshamov bound;
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学科分类号
摘要
In this paper, we firstly study construction of new quantum error-correcting codes (QECCs) from three classes of quaternary imprimitive BCH codes. As a result, the improved maximal designed distance of these narrow-sense imprimitive Hermitian dual-containing quaternary BCH codes are determined to be much larger than the result given according to Aly et al. (IEEE Trans Inf Theory 53:1183–1188, 2007) for each different code length. Thus, families of new QECCs are newly obtained, and the constructed QECCs have larger distance than those in the previous literature. Secondly, we apply a combinatorial construction to the imprimitive BCH codes with their corresponding primitive counterpart and construct many new linear quantum codes with good parameters, some of which have parameters exceeding the finite Gilbert–Varshamov bound for linear quantum codes.
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页码:4099 / 4116
页数:17
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