基于卫星的模式配对量子密钥分发性能

IF 2.2 3区 物理与天体物理 Q1 PHYSICS, MATHEMATICAL Quantum Information Processing Pub Date : 2025-03-12 DOI:10.1007/s11128-025-04706-9
Chen Yang, Lu Wang, Rongzhen Jiao
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引用次数: 0

摘要

全球量子通信网络的建立依赖于自由空间链路和光纤网络的有效融合。模式配对量子密钥分发(MP-QKD)是测量设备无关量子密钥分发(MDI-QKD)的又一进步。通过消除对复杂光场设置的需要,它打破了速率距离限制,理论上可以应用于自由空间MDI-QKD的光场设置。本文提出了一种集成星基链路和光纤链路的模式配对量子密钥分配模型,并通过模拟卫星和地面站之间大气透射率(PDT)的概率分布,对其性能进行了分析。此外,还讨论了配对间隔和不对准误差的影响。本工作可为星对地多径量子密钥分发的未来广泛应用提供重要参考。
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The performance of satellite-based mode-pairing quantum key distribution

The establishment of the global quantum communication network relies on the effective integration of free-space links and optical fiber networks. Mode-pairing quantum key distribution (MP-QKD) represents an advancement in measurement device-independent quantum key distribution (MDI-QKD). By eliminating the need for a complex light-field setup, it breaks the rate–distance limit and can be theoretically applied to the light-field setup of free-space MDI-QKD. In this work, we propose a mode-pairing quantum key distribution model that integrates satellite-based links and fiber links, and its performance is analyzed by simulating the probability distribution of atmospheric transmittance (PDT) between satellites and ground stations. Additionally, the effects of pairing interval and misalignment error are discussed. This work may provide some important references for the future widespread application of satellite-to-ground multipath quantum key distribution.

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来源期刊
Quantum Information Processing
Quantum Information Processing 物理-物理:数学物理
CiteScore
4.10
自引率
20.00%
发文量
337
审稿时长
4.5 months
期刊介绍: Quantum Information Processing is a high-impact, international journal publishing cutting-edge experimental and theoretical research in all areas of Quantum Information Science. Topics of interest include quantum cryptography and communications, entanglement and discord, quantum algorithms, quantum error correction and fault tolerance, quantum computer science, quantum imaging and sensing, and experimental platforms for quantum information. Quantum Information Processing supports and inspires research by providing a comprehensive peer review process, and broadcasting high quality results in a range of formats. These include original papers, letters, broadly focused perspectives, comprehensive review articles, book reviews, and special topical issues. The journal is particularly interested in papers detailing and demonstrating quantum information protocols for cryptography, communications, computation, and sensing.
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