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Recently, the team of He Guangqiang and Jiang Chun of the State Key Laboratory of Regional Optical Fiber Communication Network and New Optical Communication System, Department of Electronic Engineering, School of Electronic Information and Electrical Engineering, Shanghai Jiaotong University, and Jiang Chun have made progress in the field of topological quantum optics.
Research Background
Quantum entanglement describes the correlation between two or more physical subsystems, and is currently widely used in quantum communication, quantum computing, quantum precision measurement and other fields
Innovation results
In response to these problems, the research team proposed a topologically protected continuous frequency entangled two-photon state theoretical scheme.
Realization of topologically protected continuous frequency entangled two-photon states in optical topological insulators
This research work applies the novel topological boundary state to the quantum field, realizes the generation of continuous frequency entangled two-photon state and topological protection in the optical topological insulator at the same time, and provides new research ideas for the fields of quantum computing and quantum communication
The work was independently completed by Shanghai Jiaotong University.
Link to the paper : https://doi.
School of Electronic Information and Electrical Engineering
School of Electronic Information and Electrical Engineering