基于LDPC翻转译码的量子密钥分发低复杂度密钥协调算法

Tharathorn Phromsa-ard, P. Sangwongngam, K. Sripimanwat, Kamol Kaemarungsri, P. Vanichchanunt, L. Wuttisittikulkij
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引用次数: 3

摘要

量子密钥对调是量子密钥分发(QKD)的一个重要过程。它旨在纠正量子对象在量子通道上分发后的传输错误,其中两个合法方使用经典的公共认证通道来披露相关比特,以同意他们的公共密钥。这项工作提出了一种替代的有前途的方法,利用ldpc码的位翻转解码来实际实现量子密钥和解。在我们提出的方案中,改进了基于综合征解码的低复杂度码位翻转译码,并将其应用到传统的Winnow协议中,以实现纠错性能和低复杂度的硬件实现,即FPGA逻辑单元和/或存储器。从数值模拟来看,虽然我们提出的方案在最终误码率(BER)和披露比特方面的性能优于传统的Winnow和CASCADE协议,但与现有的基于LDPC的和解协议相比,它在LDPC解码中具有较低的复杂性。因此,该技术在高速离散变量QKD应用中具有广阔的应用前景。
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Low-complexity key reconciliation algorithm using LDPC bit-flipping decoding for quantum key distribution
Quantum key reconciliation is an essential process of quantum key distribution (QKD). It aims to correct the transmission errors after the distribution of quantum objects over a quantum channel, where two legitimate parties use a classical public authenticated channel to disclose correlated bits for agreeing on their common key. This work proposes an alternative promising method employing LDPC-codes bit-flipping decoding to practical implementation of quantum key reconciliation. In our proposed scheme, the low-complexity code bit-flipping decoding based on syndrome decoding is modified and applied to conventional Winnow protocol to achieve both error correcting performance and low complexity of hardware realization, i.e. FPGA logic cells and/or memory. From numerical simulation while the performance of our proposed scheme in terms of final bit error rate (BER) and disclosed bits is superior to conventional Winnow and CASCADE protocols, it yields low complexity in LDPC decoding comparable to the existing LDPC-based reconciliation protocols. Therefore, the technique is promising to high-speed discrete-variable QKD applications.
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