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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Multi-hop quantum key distribution with passive relays over underwater turbulence channels
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Multi-hop quantum key distribution with passive relays over underwater turbulence channels

机译:水下湍流通道的无源继电器多跳量子密钥分布

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摘要

Absorption, scattering, and turbulence experienced in underwater channels severely limit the range of quantum communication links. In this paper, as a potential solution to overcome range limitations, we investigate a multi-hop underwater quantum key distribution (QKD) where intermediate nodes between the source and destination nodes help the key distribution. We consider the deployment of passive relays that simply redirect the qubits to the next relay node or the receiver without any measurement. Based on the near-field analysis, we present the performance of a relay-assisted QKD scheme in terms of quantum bit error rate and secret key rate in different water types and turbulence conditions. We further investigate the effect of system parameters such as aperture size and detector field of view on the performance. Our results demonstrate under what conditions relay-assisted QKD can be beneficial and what end-to-end transmission distances can be supported with a multi-hop underwater QKD system. (C) 2020 Optical Society of America
机译:水下信道中的吸收、散射和湍流严重限制了量子通信链路的范围。在本文中,作为一种克服范围限制的潜在解决方案,我们研究了一种多跳水下量子密钥分配(QKD),其中源节点和目标节点之间的中间节点有助于密钥分配。我们考虑部署被动中继,简单地将量子比特重定向到下一中继节点或接收器而不进行任何测量。基于近场分析,我们给出了一种中继辅助量子密钥分配方案在不同水类型和湍流条件下的量子误码率和密钥率性能。我们进一步研究了孔径大小和探测器视场等系统参数对性能的影响。我们的结果表明,在什么条件下中继辅助QKD是有益的,以及多跳水下QKD系统可以支持什么样的端到端传输距离。(C) 2020美国光学学会

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