15
collaborators
2019–2021
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
1 Talk
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Realizing an entanglement-based multi-user quantum network with integrated photonics | QCRYPT 2021 | regular | Wenjun Wen, Zhiyu Chen, Liangliang Lu, Wenhan Yan, Yanqing Lu, Shining Zhu, Xiao-Song Ma |
Quantum network facilitates the secure transmission of information between different users. Establishing communication links among multiple users in a scalable and efficient way is important for realizing large-scale quantum network. Here we develop a time-energy entanglement-based dense wavelength division multiplexed network based on an integrated silicon nitride micro-ring resonator, which offers a wide frequency span (>100 nm) and narrow bandwidth modes (~ 5 pm). Six pairs of photons are selected to form a fully and simultaneously connected four-user quantum network. The observed quantum interference visibilities are well above the classical limits among all users. Our result paves the way for realizing large-scale quantum networks with integrated photonic architecture. |
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2 Posters
| Title | Conference | Co-authors |
|---|---|---|
| An integrated heterogeneous superconducting–silicon-photonic platform for measurement-device-independent quantum key distribution | QCRYPT 2021 | Xiaodong Zheng, Renyou Ge, Liangliang Lu, Guanglong He, Qi Chen, Fangchao Qu, Labao Zhang, Xinlun Cai, Yanqing Lu, Shining Zhu, Peiheng Wu, Xiao-Song Ma |
Integrated photonics provides a route both to miniaturize quantum key distribution (QKD) devices and to enhance their performance. A key element for discrete-variable QKD is single-photon detector. It is necessary to integrate such device onto a photonic chip to enable the realization of practical and scalable quantum networks. Here, we report a successful interfacing of Complementary Metal-Oxide-Semiconductor (CMOS)-compatible silicon nanophotonics with optical waveguide-integrated superconducting nanowire single-photon detector (SNSPD). We perform the first optimal Bell-state measurement (BSM) of time-bin encoded qubits generated from two independent lasers benefited from the reduced dead time of SNSPD ∼3.4 ns. The optimal BSM enables an increased key rate of measurement-device-independent QKD, which is immune to all attacks against the detection system and hence provides the basis for a QKD network with untrusted relays. Together with the time-multiplexed technique, we have enhanced the sifted key rate by almost one order of magnitude. Combined with integrated QKD transmitters, a scalable, chip-based and cost-effective QKD network should become realizable in the near future. |
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| Field trials of quantum key distribution over a etropolitan fiber network | QCRYPT 2019 | — |
Collaborators
| Co-author | Joint talks |
|---|---|
| Liangliang Lu | 2 |
| Shining Zhu | 2 |
| Xiao-Song Ma | 2 |
| Yanqing Lu | 2 |
| Fangchao Qu | 1 |
| Guanglong He | 1 |
| Labao Zhang | 1 |
| Peiheng Wu | 1 |
| Qi Chen | 1 |
| Renyou Ge | 1 |
| Wenhan Yan | 1 |
| Wenjun Wen | 1 |
| Xiaodong Zheng | 1 |
| Xinlun Cai | 1 |
| Zhiyu Chen | 1 |