北京邮电大学学报

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北京邮电大学学报

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基于标记配对相干光源的模式匹配量子密钥分发

周艺华1,田雨薇1,杨宇光1,侍伟敏2   

  1. 1. 北京工业大学
    2. 北京工业大学计算机学院
  • 收稿日期:2024-02-28 修回日期:2024-04-09 发布日期:2024-06-25
  • 通讯作者: 田雨薇
  • 基金资助:
    国家自然科学基金项目

Mode-pairing Quantum Key Distribution Based on Heralded Pair-coherent Source

Yi-Hua ZHOU1,Yu-Wei TIAN1, 2,   

  • Received:2024-02-28 Revised:2024-04-09 Published:2024-06-25
  • Contact: Yu-Wei TIAN
  • Supported by:
    The National Natural Science Foundation of China

摘要: 模式匹配量子密钥分发( MP-QKD,mode-pairing quantum key distribution )具有实验技术难度低、安全性较高、密钥率可以突破安全密钥容量限制等优点,具有重要的研究价值和应用前景。MP-QKD一般使用弱相干光源作为信号光源,其中单光子成分较少,导致MP-QKD的密钥率仍然受到较大限制。针对这一问题,提出了一种基于标记配对相干光源的模式匹配密钥分发方案,使用标记配对相干光源作为MP-QKD的信号光源,利用标记配对相干光源中单光子比例更高的优势,提高了模式匹配量子密钥分发协议的性能。在渐进和无穷多诱骗态情况下,对所提出的方案的密钥率进行了数值模拟,仿真结果表明,与使用弱相干光源作为信号光源的模式匹配量子密钥分发方案相比,使用标记配对相干光源的模式匹配量子密钥分发方案不仅有更高的密钥率,而且传输距离更远。另外,当传输距离大于400 km时,基于标记配对相干光源的模式匹配量子密钥分发在密钥率方面的优势更加明显。

关键词: 量子密钥分发, 模式匹配量子密钥分发协议, 标记配对相干光源, 安全密钥率

Abstract: Mode-pairing quantum key distribution (MP-QKD) offers advantages of low experimental technical complexity, robust security, and the ability to break the limit of secure key capacity, rendering it a subject of significant research interest and promising application potential. However, the key rate of MP-QKD is limited because of using the weak coherent source (WCS) as the signal light source, characterized by a limited single photon component. To address this problem, mode-pairing quantum key distribution based on heralded pair-coherent source is proposed, the heralded pair-coherent source (HPCS) is used as the signal light source in MP-QKD. Due to the higher proportion of single photons in HPCS, the performance of MP-QKD is significantly improved. The numerical simulation is carried out in the case of asymptotic and infinite decoy states, the result shows that the HPCS MP-QKD outperforms the WCS MP-QKD, achieving not only a higher key rate but also a longer communication distance. Moreover, HPCS MP-QKD demonstrates a more obvious advantage in terms of the key rate when the transmission distance exceeds 400 km.

Key words: quantum key distribution, mode-pairing quantum key distribution protocol, heralded pair-coherent source, secure key rate

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