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Free-space continuous-variable quantum key distribution in atmospheric channels based on low-density parity-check codes

机译:基于低密度奇偶校验码的大气通道自由空间连续变量量子密钥分布

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摘要

Free-space continuous-variable quantum key distribution (CV-QKD) links provide greater information capability and broader geographical coverage. A major challenge for the practical use of free-space quantum systems is that the signal-to-noise ratios of the channels are relatively low and are sensitive to atmospheric disturbance. The atmospheric channel has several negative characteristics that diminish the secret key rate, such as beam extinction and various turbulence effects. The effect of beam wandering on the quantum properties is mainly considered, and the probability distribution of the transmission coefficient is derived to establish the channel model. Low-density parity-check (LDPC) codes operated in the reconciliation procedure are utilized to deal with information interactivity. However, the LDPC codes need to be chosen from a range of codes, where the code rate is considered in low signal-to-noise ratio free-space links. The accumulate-repeat-accumulate code is adopted to improve the decoding threshold of a code. It is found that the multi-edge feature of extended codes is beneficial to the performance of short- and medium-length codes. And numerical results show the proposed scheme provides enhancement in the reconciliation efficiency. LDPC codes containing an additional structure that facilitates decoding could be suitable for free-space CV-QKD protocols when weak atmospheric turbulence is considered.
机译:自由空间连续变量量子密钥分布(CV-QKD)链接提供更大的信息能力和更广泛的地理覆盖。自由空间量子系统的实际使用的主要挑战是通道的信噪比相对较低,对大气干扰敏感。大气通道具有几个负特性,可使秘密钥匙率降低,例如光束灭火和各种湍流效应。主要考虑光束徘徊在量子特性上的效果,导出透射系数的概率分布来建立信道模型。在调和过程中操作的低密度奇偶校验(LDPC)代码用于处理信息交互性。然而,需要从一系列代码中选择LDPC码,其中在低信噪比下被认为是码率的码率。采用累积重复累加的代码来改善代码的解码阈值。发现扩展码的多边特征有利于性能的短度和中等长度代码。数值结果表明,所提出的方案提供了对和解效率的增强。当考虑弱大气湍流时,含有促进解码的附加结构的LDPC码可能适用于自由空间CV-QKD协议。

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