BCH-based Slepian-Wolf coding with feedback syndrome decoding for quantum key reconciliation

Patcharapong Treeviriyanupab, P. Sangwongngam, K. Sripimanwat, Ornlarp Sangaroon
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引用次数: 10

Abstract

The quantum key reconciliation is an essential step of QKD protocol. Its main objective is to correct the transmission error after the distribution of quantum objects over a quantum channel, where two legitimate parties use a classical interactive communication for agreeing on their common key. This paper presents an alternative quantum key reconciliation method based on the Slepian-Wolf coding scheme with the chosen optimal set of BCH code rates as close to the Slepian-Wolf bound. In the proposed scheme, the BCH decoder is modified by adding one-bit feedback based on syndrome decoding to detect uncorrectable errors whenever the decoding process fails. The performance evaluation of this proposed scheme can achieve the reconciliation efficiency and reduce the cost of interactive communication via an error-free public channel comparable to the well-known reconciliation protocols. It is then suitable to apply for higher-speed discrete-variable QKD applications.
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基于bch的睡眠-狼编码与反馈综合征的量子密钥和解解码
量子密钥协调是量子密钥分配协议的重要环节。它的主要目标是纠正量子对象在量子信道上分发后的传输错误,其中两个合法方使用经典的交互通信来商定他们的公共密钥。本文提出了一种基于Slepian-Wolf编码方案的替代量子密钥协调方法,该方法选择了最优BCH码率集,使其接近Slepian-Wolf界。在该方案中,对BCH解码器进行了改进,增加了基于综合征解码的1位反馈,以便在解码过程失败时检测不可纠正的错误。性能评估表明,该方案可以达到和解效率,并降低通过无错误的公共通道进行交互通信的成本,可与知名的和解协议相媲美。因此,它适用于高速离散变量QKD应用。
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