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Experimental side channel secure quantum key distribution under realistic conditions

作者:Hao Dong, Cong Jiang, Di Ma, Chi Zhang, Jia Huang, Hao Li, Lixing You, Yang Liu, Xiang‐Bin Wang, Qiang Zhang, Jian-Wei Pan · 发表于:Physical Review Research · 年份:2026 · DOI:10.1103/fxxb-9y8n · 被引用次数:1 · 研究领域:Quantum Information and Cryptography、Advanced Statistical Modeling Techniques、Quantum and electron transport phenomena

Quantum key distribution (QKD) theoretically provides unconditional security between remote parties. However, guaranteeing practical security through device characterization alone is challenging in real-world implementations due to the multidimensional spaces in which the devices may be operated. The side channel secure (SCS) QKD protocol, which only requires bounding the upper limits of the intensities for the two states, theoretically provides a rigorous solution to the challenge and achieves measurement-device-independent security in detection and security for whatever multidimensional side channel attack in the source. Here, we demonstrate a practical implementation of SCS-QKD, achieving a secure key rate of 6.67 kbps through a 50.5 km fiber and a maximum distribution distance of 101.1 km while accounting for finite-size effects. Our experiment also represents an approximately 40 times improvement over the previous experiment.