1
talks
2
posters
0
committee roles
0
leadership roles
2017–2024
years active
Contributions
QIP QCrypt TQC presenter award · △program ◇steering ○organising □local · filled = chair
Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
|
Hacking twin-field quantum key distribution via wavelength-switching attack
Best Student Paper Award (Experiment) — Peng Qingquan
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QCRYPT 2024 | regular | Peng Qingqian, Chen Jiupeng, Xing Tianyi, Wang Dongyang, Wang Yizhi, Liu Yang, Huang Anqi |
The twin-field class quantum key distribution (TF-class QKD) has experimentally demonstrated the ability to surpass the fundamental rate-distance limit without requiring a quantum repeater, as a revolutional milestone. In TF-class QKD implementation, an optical phase-locked loop (OPLL) structure is commonly employed to generate a reference light with correlated phase, ensuring coherence of optical fields between Alice and Bob. In this configuration, the reference light, typically located in the untrusted station Charlie, solely provides wavelength reference for OPLL and does not participate in quantum-state encoding. However, the reference light may open a door for Eve to enter the source stations that are supposed to be well protected. Here, by identifying vulnerabilities in the OPLL scheme, we propose and demonstrate a wavelength-switching attack on a TF-class QKD system. This attack involves Eve deliberately manipulating the wavelength of the reference light to increase mean photon number of prepared quantum states, while maintaining stable interference between Alice and Bob as required by TF-class QKD protocols. The maximum observed increase in mean photon number is 8.7%, which has been theoretically proven to compromise the security of a TF-class QKD system. Through this study, we disclose security vulnerabilities associated with TF-class QKD implementation and provide valuable insights into its practical security. |
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Posters
| Title | Conference | Co-authors |
|---|---|---|
| Performance improvement of continuous-variable quantum key distribution with an entangled source in the middle via photon subtraction | QCRYPT 2017 | Qin Liao, Yijun Wang, Duan Huang, Peng Huang, Guihua Zeng |
| A novel long-distance continuous-variable quantum key distribution scheme with state-discrimination receiver and non-Gaussian operation | QCRYPT 2017 | Qin Liao, Duan Huang, Peng Huang, Guihua Zeng |
Collaborators
| Co-author | Joint talks |
|---|---|
| Duan Huang | 2 |
| Guihua Zeng | 2 |
| Peng Huang | 2 |
| Qin Liao | 2 |
| Chen Jiupeng | 1 |
| Huang Anqi | 1 |
| Liu Yang | 1 |
| Peng Qingqian | 1 |
| Wang Dongyang | 1 |
| Wang Yizhi | 1 |
| Xing Tianyi | 1 |
| Yijun Wang | 1 |