量子密钥分配
量子纠缠
反冲
物理
量子网络
量子
实现(概率)
钥匙(锁)
量子力学
量子干涉
量子信息科学
干扰(通信)
光子
量子信道
Atom(片上系统)
量子密码学
量子传感器
振幅阻尼通道
纤维
方案(数学)
量子计算机
拓扑(电路)
光子纠缠
量子容量
自发参量下转换
量子光学
量子技术
量子信息
光纤
作者
Bo-Wei Lu,Chao-Wei Yang,Run-Qi Wang,Boyang Gao,Yi-Zheng Zhen,Zhen-Gang Wang,Jia-Kai Shi,Zhong-Qi Ren,Thomas Hahn,Ernest Y.-Z. Tan,Xiu-Ping Xie,Ming-Yang Zheng,Xiao Jiang,Jun Zhang,Feihu Xu,Q. J. Zhang,Xiao‐Hui Bao,Jian-Wei Pan
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-02-05
卷期号:391 (6785): 592-597
被引量:2
标识
DOI:10.1126/science.aec6243
摘要
Device-independent quantum key distribution (DI-QKD) is a key application of the quantum internet. We report the realization of DI-QKD between two single-atom nodes linked by 100-kilometer (km) fibers. To improve the entangling rate, single-photon interference is leveraged for entanglement heralding, and quantum frequency conversion is used to reduce fiber loss. A tailored Rydberg-based emission scheme suppresses the photon recoil effect on the atom without introducing noise. We achieved high-fidelity atom-atom entanglement and positive asymptotic key rates for fiber lengths up to 100 km. At 11 km, 1.2 million heralded Bell pairs were prepared over 624 hours, yielding an estimated extractable finite-size secure key rate of 0.112 bits per event against general attacks. Our results close the gap between proof-of-principle quantum network experiments and real-world applications.
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