论文标题
实用高维量子密钥分布的有效时间键编码
Efficient time-bin encoding for practical high-dimensional quantum key distribution
论文作者
论文摘要
高维量子密钥分布(QKD)允许实现信息理论的安全通信,提供高密钥生成率,原则上无法通过QKD协议和二进制编码来获得。但是,由于要检测到的量子状态属于更大的希尔伯特空间,因此需要增加的实验资源数量,从而提高了实际的高维系统的成本。在这里,我们提出了一种基于纤维的4维QKD的新方案,该方案具有时间和相位编码和一级状态技术。量子状态传输在高达145 km的标准单模光纤的不同通道长度上进行了测试,并评估了与三态二维BB84协议相比,秘密关键率的提高,该协议通过相同的实验设置进行了测试。我们的方案允许使用简化和紧凑的接收器测量4维状态,其中只有两个单光子检测器,因此使其成为基于实用和基于光纤QKD的经济高效解决方案。
High-dimensional quantum key distribution (QKD) allows to achieve information-theoretic secure communications, providing high key generation rates which cannot in principle be obtained by QKD protocols with binary encoding. Nonetheless, the amount of experimental resources needed increases as the quantum states to be detected belong to a larger Hilbert space, thus raising the costs of practical high-dimensional systems. Here, we present a novel scheme for fiber-based 4-dimensional QKD, with time and phase encoding and one-decoy state technique. Quantum states transmission is tested over different channel lengths up to 145 km of standard single-mode fiber, evaluating the enhancement of the secret key rate in comparison to the three-state 2-dimensional BB84 protocol, which is tested with the same experimental setup. Our scheme allows to measure the 4-dimensional states with a simplified and compact receiver, where only two single-photon detectors are necessary, thus making it a cost-effective solution for practical and fiber-based QKD.