1
program role
53
collaborators
2016–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
2 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Long Distance Quantum State Transfer with Satellite-based Entanglement Distribution | QCRYPT 2022 | regular | Bo Li, Yuan Cao, Yu-Huai Li, Wen-Qi Cai, Wei-Yue Liu, Ji-Gang Ren, Sheng-Kai Liao, Hui-Nan Wu, Shuang-Lin Li, Li Li, Nai-Le Liu, Juan Yin, Yu-Ao Chen, Cheng-Zhi Peng, Jian-Wei Pan |
| MDI-QKD with 19.2 km free-space channel | QCRYPT 2021 | regular | Yuan Cao, Yu-Huai Li, Kui-Xing Yang, Yang-Fan Jiang, Shuang-Lin Li, Xiao-Long Hu, Maimaiti Abulizi, Cheng-Long Li, Weijun Zhang, Qi-Chao Sun, Wei-Yue Liu, Xiao Jiang, Sheng-Kai Liao, Ji-Gang Ren, Hao Li, Lixing You, Zhen Wang, Juan Yin, Xiang-Bin Wang, Qiang Zhang, Cheng-Zhi Peng, Jian-Wei Pan |
Measurement-device-independent quantum key distribution (MDI-QKD), based on two-photon interference, is immune to all attacks against the detection system and allows a QKD network with untrusted relays. Since the MDI-QKD protocol was proposed, fiber-based implementations aimed at longer distance, higher key rates and network verification have been rapidly developed. However, owing to the effect of atmospheric turbulence, MDI-QKD over free-space channel remains experimentally challenging. Herein, by developing a robust adaptive optics system, high-precision time synchronization and frequency locking between independent photon sources located far apart, we realized the first free-space MDI-QKD over a 19.2-km urban atmospheric channel, which well exceeds the effective atmospheric thickness. Our experiment takes the first step towards satellite-based MDI-QKD. Moreover, the technology developed herein opens the way to quantum experiments in free space involving long-distance interference of independent single photons. |
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4 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Compact Logical Information Processing on the Rotated Surface Code: a Dynamical Design | QIP 2026 | ▸Zi-Han Chen, Ming-Cheng Chen, Jian-Wei Pan |
| Hierarchical Logical Processor on the Rotated Surface Code | QIP 2026 | ▸Zi-Han Chen, Ming-Chen Chen |
| 1002 km Twin-Field Quantum Key Distribution with Finite-Key Analysis | QCRYPT 2024 | Yang Liu, Wei-Jun Zhang, Cong Jiang, Jiu-Peng Chen, Di Ma, Chi Zhang, Wen-Xin Pan, Hao Dong, Jia-Min Xiong, Cheng-Jun Zhang, Hao Li, Rui-Chun Wang, Jun Wu, Teng-Yun Chen, Lixing You, Xiang-Bin Wang, Qiang Zhang, Jian-Wei Pan |
Quantum key distribution (QKD) holds the potential to establish secure keys over long distances. The distance of point-to-point QKD secure key distribution is primarily impeded by the transmission loss inherent to the channel. In the quest to realize a large-scale quantum network, increasing the QKD distance under current technology is of great research interest. Here we adopt the 3-intensity sending-or-not-sending twin-field QKD (TF-QKD) protocol with the actively-odd-parity-pairing method. The experiment demonstrates the feasibility of secure QKD over a 1002 km fibre channel considering the finite size effect. The secure key rate is $3.11 10^{-12}$ per pulse at this distance. Furthermore, by optimizing parameters for shorter fiber distances, we conducted performance tests on key distribution for fiber lengths ranging from 202 km to 505 km. Notably, the secure key rate for the 202 km, the normal distance between major cities, reached 111.74 kbps. |
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| Experimental Quantum Data Locking | QCRYPT 2016 | Yang Liu, Zhu Cao, Cheng Wu, Daiji Fukuda, Lixing You, Jiaqiang Zhong, Takayuki Numata, Sijing Chen, Weijun Zhang, Sheng-Cai Shi, Zhen Wang, Xiongfeng Ma, Jingyun Fan, Qiang Zhang, Jian-Wei Pan |
Committee service
| Conference | Committee | Position | Title |
|---|---|---|---|
| QCRYPT 2019 | program | member | — |
Collaborators
| Co-author | Joint talks |
|---|---|
| Jian-Wei Pan | 5 |
| Lixing You | 3 |
| Qiang Zhang | 3 |
| Cheng-Zhi Peng | 2 |
| Hao Li | 2 |
| Ji-Gang Ren | 2 |
| Juan Yin | 2 |
| Sheng-Kai Liao | 2 |
| Shuang-Lin Li | 2 |
| Wei-Yue Liu | 2 |
| Weijun Zhang | 2 |
| Xiang-Bin Wang | 2 |
| Yang Liu | 2 |
| Yu-Huai Li | 2 |
| Yuan Cao | 2 |
| Zhen Wang | 2 |
| Zi-Han Chen | 2 |
| Bo Li | 1 |
| Cheng Wu | 1 |
| Cheng-Jun Zhang | 1 |