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talks
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posters
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committee roles
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leadership roles
2025–2025
years active
Posters
| Title | Conference | Co-authors |
|---|---|---|
| Continuous-variable quantum key distribution over 50.4 km fiber using integrated silicon photonic transmitter and receiver | QCRYPT 2025 | Yongmin Li, Shuaishuai Liu, Yanxiang Jia, Yuqi Shi, Pu Wang, Yu Zhang, Shiwei Yang, Zhengguo Lu, Xuyang Wang |
Quantum key distribution (QKD) is the fastest-growing and relatively mature technology in the field of quantum information, enabling information-theoretically secure key distribution between two remote users. Although QKD based on off-the-shelf telecom components has been validated in both laboratory and field tests, its high cost and large volume remain major obstacles to large-scale deployment. Photonic integration, featured by its compact size and low cost, offers an effective approach to addressing the above challenges faced by QKD. Here, we implement a high-performance, integrated local local oscillator continuous-variable (CV) QKD system based on an integrated silicon photonic transmitter and receiver. By employing a high-speed silicon photonic integrated in-phase and quadrature modulator, a high signal-to-noise ratio and high bandwidth silicon photonic integrated heterodyne detector, and digital signal processing, our CV-QKD system achieves a symbol rate of up to 1.5625 GBaud. Furthermore, the system achieves high secret key rates of 14.7 and 2.46 Mbps over 25.8 and 50.4 km standard single-mode fiber, respectively, using an 8-phase-shift keying discrete modulation. Our fully integrated CV-QKD system with high symbol rate and long transmission distance pays the way for the quantum secure communication network at metropolitan area. |
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Collaborators
| Co-author | Joint talks |
|---|---|
| Pu Wang | 1 |
| Shiwei Yang | 1 |
| Shuaishuai Liu | 1 |
| Xuyang Wang | 1 |
| Yanxiang Jia | 1 |
| Yongmin Li | 1 |
| Yu Zhang | 1 |
| Yuqi Shi | 1 |
| Zhengguo Lu | 1 |