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Free-Space Twin-Field Quantum Key Distribution

Quantum Physics 2025-03-25 v1

Abstract

Twin-field quantum key distribution (TF-QKD) elevates the secure key rate from a linear to a square-root dependence on channel loss while preserving measurement-device-independent security. This protocol is uniquely positioned to enable global-scale quantum networks, even under extreme channel loss. While fiber-based TF-QKD implementations have advanced rapidly since its proposal, free-space realizations have remained elusive due to atmospheric turbulence-induced phase distortions. Here, we report the first experimental demonstration of free-space TF-QKD over 14.2 km urban atmospheric channels, surpassing the effective atmospheric thickness -- a critical threshold for satellite compatibility. We achieve a secret key rate exceeding the repeaterless capacity bound, a milestone for practical quantum communication. Our approach eliminates the need for an auxiliary channel to stabilize a closed interferometer, instead leveraging open-channel time and phase control of optical pulses. This work represents a pivotal advance toward satellite-based global quantum networks, combining high-speed key distribution with inherent resistance to real-world channel fluctuations.

Keywords

Cite

@article{arxiv.2503.17744,
  title  = {Free-Space Twin-Field Quantum Key Distribution},
  author = {Yu-Huai Li and Ting Zeng and Min-Yan Wang and Cong Jiang and Jin Lin and Hao-Bin Fu and Xin-Yang Zheng and Jiu-Peng Chen and Zeng-Sen Lin and Cheng-Lin Li and Jian-Yu Guan and Yang Li and Qi Shen and Hao Li and Lixing You and Zhen Wang and Fei Zhou and Juan Yin and Sheng-Kai Liao and Ji-Gang Ren and Xiang-Bin Wang and Yuan Cao and Qiang Zhang and Cheng-Zhi Peng and Jian-Wei Pan},
  journal= {arXiv preprint arXiv:2503.17744},
  year   = {2025}
}

Comments

17 pages, 3 figures

R2 v1 2026-06-28T22:30:50.771Z