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Hybrid quantum key distribution using coherent states and photon-number-resolving detectors

机译:使用相干状态和光子号码探测器的混合量子密钥分布

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We put forward a hybrid quantum key distribution protocol based on coherent states, Gaussian modulation, and photon-number-resolving (PNR) detectors, and show that it may enhance the secret key generation rate (KGR) compared to homodyne-based schemes. Improvement in the KGR may be traced back to the dependence of the two-dimensional discrete output variable on both the input quadratures, thus overcoming the limitations of the original protocol. When reverse reconciliation is considered, the scheme based on PNR detectors outperforms the homodyne one both for individual and collective attacks. In the presence of direct reconciliation, the PNR strategy is still the best one against individual attacks, but for the collective ones the homodyne-based scheme is still to be preferred as the channel transmissivity decreases.
机译:我们提出了一种基于相干状态,高斯调制和光子号码(PNR)检测器的混合量子密钥分布协议,并表明它可以增强与基于杂差的方案相比的秘密密钥生成率(KGR)。 KGR中的改进可以追溯到在输入二对字上的二维离散输出变量的依赖性,从而克服原始协议的限制。 当考虑反对和解时,基于PNR检测器的方案优于个体攻击,以便为个人和集体攻击而占用。 在直接和解的存在下,PNR策略仍然是针对个体攻击的最佳选择,但对于集体的基于差异的方案仍然是优选的,因为信道透射率降低。

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