In this paper we report a continuous-variable quantum key distribution protocol using multimode coherent states generated on subcarrier frequencies of the optical spectrum. We propose a coherent detection scheme where power from a carrier wave is used as a local oscillator. We compose a mathematical model of the proposed scheme and perform its security analysis in the finite-size regime using fully quantum asymptotic equipartition property technique. We calculate a lower bound on the secret key rate for the system under the assumption that the quantum channel noise is negligible compared to detector dark counts, and an eavesdropper is restricted to collective attacks. Our calculation shows that the current realistic system implementation would allow distributing secret keys over channels with losses up to 9 dB.

译文

:在本文中,我们报告了一种连续可变量子密钥分配协议,该协议使用在光谱的子载波频率上生成的多模相干态。我们提出了一种相干检测方案,其中将来自载波的功率用作本地振荡器。我们组成了该方案的数学模型,并使用完全量子渐近等分性质技术在有限大小的方案中进行了安全性分析。我们假设量子信道噪声与检测器暗计数相比可忽略不计,并且窃听者仅限于集体攻击,从而计算出系统的秘密密钥率的下限。我们的计算表明,当前现实的系统实现方式将允许在损耗高达9 dB的信道上分配秘密密钥。

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