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    High-Rate Measurement-Device-Independent Quantum Key Distribution under Intense Noise

    Hong-Wei Li1,2,*, Wei-Xin Xie1,3,4,*, Chun-Mei Zhang5,†, Guan-Jie Fan-Yuan1,3,4,‡, Yu-Long Wang1,3,4, Yu-Xuan Fan1,3,4, Shuang Wang1,3,4,6, Zhen-Qiang Yin1,3,4,6, Wei Chen1,3,4,6 et al.

    De-Yong He1,3,4,6, Guang-Can Guo1,3,4,6, and Zheng-Fu Han1,3,4,6

    • *These authors contributed equally to this work.
    • †Contact author: cmz@njupt.edu.cn
    • ‡Contact author: fanygj@ustc.edu.cn

    Phys. Rev. Lett. 137, 140803 – Published 30 September, 2026

    DOI: https://doi.org/10.1103/1b8r-r248

    Abstract

    Measurement-device-independent quantum key distribution (MDI-QKD) is a promising path toward practical quantum communication, but current high-performance demonstrations come at prohibitive overhead and isolated environments. Here, we present a high-speed MDI-QKD system operating at an unprecedented repetition frequency of 2.5 GHz and verify its strong noise tolerance by incorporating the advantage distillation method. The secure key is efficiently generated under 425 kHz noise counts, which is 4 orders of magnitude higher than isolated systems. A secure key rate with a kbps level is achieved under 30 dB channel attenuation without bulky, resource-intensive detection devices. Our Letter establishes a complete practical solution for QKD deployment and resolves the persistent difficulty of realizing practical quantum secure networks with advanced security, a high key rate, environmental robustness, and physical compactness.

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