Quantum Photonic Integrated Devices (QUPID) Lab
We study various solid-state quantum systems, such as quantum dots, defects, and newly emerging quantum materials.
Our research aims to generate and control photonic and spin qubits from solid-state quantum structures to implement scalable and integrated quantum systems.
These systems will provide chip-scale platforms for quantum information technologies, such as quantum communication, quantum sensing, and quantum computing.
Research review article-quantum light (Korean)Research review article-quantum sensor (Korean)Research review article-QDs for photonic quantum information technology (English)Research review article-Hybrid integration for quantum photonics (English)Research review article-Diamond quantum sensor (English)
Research topics
- Quantum light sources (single photons and entangled photon pair)
- Cavity-quantum electrodynamics
- Quantum entanglement and quantum interactions
- On-chip integrated solid-state quantum devices
Research introduction




Research applications
- Fundamental study of light-matter interaction and quantum phenomena such as quantum entanglement
- Development of Quantum hardware: quantum light sources, quantum memories, and quantum gates
- Photonic quantum information processing








