Microcomb-driven large-scale fully connected quantum network
- Fang-Xiang Wang
- Sheng-Teng Zheng
- Long Huang
- Guo-Wei Zhang
- Guang-Shu Wang
- Wen-Jing Ding
- Ze-Hao Wang
- Shuang Wang
- Zhen-Qiang Yin
- Chang-Ling Zou
- Brent E. Little
- Guochao Wang
- Lingxiao Zhu
- Guang-Can Guo
- Weiqiang Wang
- Wenfu Zhang
- Wei Chen
- Zheng-Fu Han
2026-08-03
Fully connected quantum networks enable simultaneous connection of every user to every other user and are a highly versatile and robust networking architecture. However, the scalability of such networks remains a great challenge for practical applications. Here we construct a large-scale fully connected quantum network founded on two-photon Hong-Ou-Mandel (HOM) interference, where user-to-user security is guaranteed even with an untrusted network provider. Using integrated soliton microcomb (SMC) and photonic encoding chips, we realize precise, massively parallel frequency generation and locking, high-visibility HOM interference and measurement-device-independent (MDI) quantum key distribution. The proposed architecture enables a fully connected quantum network over 200 kilometers with strict information-theoretic security via an untrusted network provider. The implemented networking architecture paves the way for large-scale fully connected MDI quantum networks across metropolitan and intercity regions.