activity
20202025
most citedHigh-efficiency single-photon source above the loss-tolerant threshold for efficient linear optical quantum computing

20 citations · 31 across the 5 of their papers we have counts for

collaborators

6 papers

quant-ph2025★ 8 cited

Realization of an untrusted intermediate relay architecture using a quantum dot single-photon source

Mi Zou, Yu-Ming He, Yizhi Huang +22

To fully exploit the potential of quantum technologies, quantum networks are needed to link different systems, significantly enhancing applications in computing, cryptography, and…

quant-ph2025★ 1 cited

Large-scale quantum-dot-lithium-niobate hybrid integrated photonic circuits enabling on-chip quantum networking

Xudong Wang, Xiuqi Zhang, Bowen Chen +7

Hybrid integrated quantum photonics combines solid-state artificial atoms with reconfigurable photonic circuits, enabling scalable chip-based quantum networks. Self-assembled quant…

quant-ph2024★ 2 cited

Experimental single-photon quantum key distribution surpassing the fundamental coherent-state rate limit

Yang Zhang, Xing Ding, Yang Li +17

Single-photon sources are essential for quantum networks, enabling applications ranging from quantum key distribution (QKD) to the burgeoning quantum internet. Despite the remarkab…

quant-ph2024

Polarized and bright telecom C-band single-photon source from InP-based quantum dots coupled to elliptical Bragg gratings

Zhenxuan Ge, Tunghsun Chung, Yu-Ming He +2

Bright, polarized, and high-purity single-photon sources in telecom wavelengths are crucial components in long-distance quantum communication, optical quantum computation and quant…

quant-ph2023★ 20 cited

High-efficiency single-photon source above the loss-tolerant threshold for efficient linear optical quantum computing

Xing Ding, Yong-Peng Guo, Mo-Chi Xu +13

Photon loss is the biggest enemy for scalable photonic quantum information processing. This problem can be tackled by using quantum error correction, provided that the overall phot…

quant-ph2020

Observation of intensity squeezing in resonance fluorescence from a solid-state device

Hui Wang, Jian Qin, Si Chen +10

Intensity squeezing, i.e., photon number fluctuations below the shot noise limit, is a fundamental aspect of quantum optics and has wide applications in quantum metrology. It was p…