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基于超亮纠缠的404公里光纤量子密钥分发

Ultrabright Entanglement Based Quantum Key Distribution over a 404 km Optical Fiber.

作者信息

Zhuang Shi-Chang, Li Bo, Zheng Ming-Yang, Zeng Yi-Xi, Wu Hui-Nan, Li Guang-Bing, Yao Quan, Xie Xiu-Ping, Li Yu-Huai, Qin Hao, You Li-Xing, Xu Feihu, Yin Juan, Cao Yuan, Zhang Qiang, Peng Cheng-Zhi, Pan Jian-Wei

机构信息

University of Science and Technology of China, Hefei National Research Center for Physical Sciences at the Microscale and School of Physical Sciences, Hefei 230026, China.

Shanghai Research Center for Quantum Sciences and CAS Center for Excellence in Quantum Information and Quantum Physics, University of Science and Technology of China, Shanghai 201315, China.

出版信息

Phys Rev Lett. 2025 Jun 13;134(23):230801. doi: 10.1103/PhysRevLett.134.230801.

Abstract

Entangled photons are crucial resources for quantum information processing. Here, we present an ultrabright polarization-entangled photon source based on a periodically poled lithium niobate waveguide designed for practical quantum communication networks. Using a 780 nm pump laser, the source achieves a pair generation rate of 2.4×10^{10}  pairs/s/mW. Remarkably, the entangled photons are bright enough to be detected by a power meter, reaching a power of 17.9 nW under a pump power of 3.2 mW. We demonstrate the practicality of the source by conducting quantum key distribution experiments over long-distance fiber links. Wavelength-division multiplexing was employed to enhance the key generation, and nonlocal dispersion compensation was implemented to ensure precise timing coincidence measurements across a broad spectral range. By utilizing nine pairs of wavelength channels, the system achieved the applicable secure key rates of up to 440.80  bits/s over 200 km with a 62 dB loss and extended the maximum secure key generation distance to 404 km. These results demonstrate the potential of wavelength-multiplexed polarization-entangled photon sources for high-speed, long-distance quantum communication, positioning them as key components for future large-scale quantum networks.

摘要

纠缠光子是量子信息处理的关键资源。在此,我们展示了一种基于周期性极化铌酸锂波导的超亮偏振纠缠光子源,该波导专为实用量子通信网络而设计。使用780纳米泵浦激光器,该源实现了2.4×10¹⁰对/秒/毫瓦的对生成率。值得注意的是,纠缠光子足够明亮,可被功率计检测到,在3.2毫瓦的泵浦功率下达到17.9纳瓦的功率。我们通过在长距离光纤链路上进行量子密钥分发实验来证明该源的实用性。采用波分复用增强密钥生成,并实施非局域色散补偿以确保在宽光谱范围内进行精确的定时符合测量。通过利用九对波长通道,该系统在200公里、损耗62分贝的情况下实现了高达440.80比特/秒的适用安全密钥率,并将最大安全密钥生成距离扩展到404公里。这些结果证明了波长复用偏振纠缠光子源在高速、长距离量子通信方面的潜力,使其成为未来大规模量子网络的关键组件。

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