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Orthogonal Frequency-Division Multiplexed Quantum Key Distribution

机译:正交频分复用量子密钥分配

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摘要

We propose orthogonal frequency-division multiplexing (OFDM), as a spectrally efficient multiplexing technique, for quantum key distribution at the core of trusted-node quantum networks. Two main schemes are proposed and analyzed in detail, considering system imperfections, specifically, time misalignment issues. It turns out that while multiple service providers can share the network infrastructure using the proposed multiplexing techniques, no gain in the total secret key generation rate is obtained if one uses conventional passive all-optical OFDM decoders. To achieve a linear increase in the key rate with the number of channels, an alternative active setup for OFDM decoding is proposed, which employs an optical switch in addition to conventional passive circuits. We show that by using our proposed decoder, the bandwidth utilization is considerably improved as compared to conventional wavelength-division multiplexing techniques.
机译:我们提出正交频分复用(OFDM),作为一种频谱有效的复用技术,用于在受信任节点量子网络的核心处进行量子密钥分配。提出并详细分析了两个主要方案,其中考虑了系统缺陷,尤其是时间未对准问题。事实证明,尽管多个服务提供商可以使用建议的复用技术共享网络基础结构,但是如果使用传统的无源全光OFDM解码器,则无法获得总密钥生成速率的收益。为了实现密钥率随信道数量的线性增加,提出了一种用于OFDM解码的替代有源设置,该有源设置除了传统的无源电路之外还采用了光开关。我们表明,通过使用我们提出的解码器,与传统的波分复用技术相比,带宽利用率得到了显着提高。

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