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Secure communication with a heralded single-photon source

机译:与预言的单光子源进行安全通信

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摘要

Secure long distance communication over optical fibres requires robust data encryption. While the encryption itself can be conducted using classical algorithms, there is no unconditionally secure method of classical key distribution. Quantum key distribution (QKD), on the other hand, can provide users of the optical networks with unconditionally secure keys. Since QKD is based on single-photon transmission, one of the challenging tasks is to overcome the distance limitation imposed by the losses in optical fibres. In this work we show that single-photon based QKD outperforms the industry-standard weak coherent pulse approach. We also present our recent experimental results on building a heralded single-photon source based on spontaneous parametric down-conversion of CW light and discuss problems and challenges of heralded single-photon generation in the CW regime.
机译:光纤上的安全长距离通信需要强大的数据加密。尽管可以使用经典算法进行加密本身,但没有无条件安全的经典密钥分发方法。另一方面,量子密钥分发(QKD)可以为光网络的用户提供无条件安全的密钥。由于QKD基于单光子传输,因此具有挑战性的任务之一是克服光纤损耗带来的距离限制。在这项工作中,我们表明基于单光子的QKD优于行业标准的弱相干脉冲方法。我们还介绍了我们最近的实验结果,该结果基于连续波光的自发参数降频转换来构建预示单光子源,并讨论了预激单光子在CW体制下的问题和挑战。

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