20
collaborators
2019–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
3 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Chip-based Long-distance Twin-field Quantum Key Distribution Networks | QCRYPT 2026 | regular | Yun Zheng, Hanyu Wang, Xinyu Jia, Jiahui Huang, Huihong Yuan, Lin Chang |
We demonstrate a scalable integrated photonic network for twin-field quantum key distribution (TF-QKD). The architecture employs a star topology, utilizing a server-side Si3N4 optical microcomb and 20 monolithically integrated InP transmitter chips. Coherent comb lines are used to seed client lasers, enabling wavelength-division multiplexing and ensuring stable interference. Sequential pairwise TF-QKD is performed across ten channels among 20 users, with each channel surpassing the repeaterless secret-key-capacity bound at a distance of 370 km. This yields an overall networking capability of 3,700 km. Wafer-scale chip reproducibility confirms the platform’s practicability for building large-scale quantum communication networks. Furthermore, we demonstrate a design utilizing a broadly tunable on-chip laser, which is expected to cover the entire telecommunication C-band. This approach enables dozens of wavelength channels to operate in parallel, thereby scaling the network capacity up to hundred-user-level. |
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| Silicon Photonic Quantum Technologies | QCRYPT 2022 | tutorial ▸ presenter | — |
| High-dimensional chip-to-chip entanglement distribution through multicore fibre | QCRYPT 2019 | regular | Daniel Llewellyn, Caterina Vigliar, Benjamin Slater, Beatrice Da Lio, Stefano Paesani, Jorge Barreto, Dondu Sahin, Massimo Borghi, John Rarity, Leif Katsuo Oxenløwe, Karsten Rottwitt, Yunhong Ding, Mark Thompson, Davide Bacco |
In this work we report the first chip-to-chip multidimensional entanglement distribution. The faithful generation and transmission of the multidimensional quantum states relies on two main ingredients: silicon integrated photonics, offering a compelling platform for quantum information processing, and multicore fibres, which allows the reliable transmission of path encoded qudits. |
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Collaborators
| Co-author | Joint talks |
|---|---|
| Beatrice Da Lio | 1 |
| Benjamin Slater | 1 |
| Caterina Vigliar | 1 |
| Daniel Llewellyn | 1 |
| Davide Bacco | 1 |
| Dondu Sahin | 1 |
| Hanyu Wang | 1 |
| Huihong Yuan | 1 |
| Jiahui Huang | 1 |
| John Rarity | 1 |
| Jorge Barreto | 1 |
| Karsten Rottwitt | 1 |
| Leif Katsuo Oxenløwe | 1 |
| Lin Chang | 1 |
| Mark Thompson | 1 |
| Massimo Borghi | 1 |
| Stefano Paesani | 1 |
| Xinyu Jia | 1 |
| Yun Zheng | 1 |
| Yunhong Ding | 1 |