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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 topics

  1. Quantum light sources (single photons and entangled photon pair)
  2. Cavity-quantum electrodynamics
  3. Quantum entanglement and quantum interactions
  4. On-chip integrated solid-state quantum devices

Research introduction

Photonic qubits
Photonic Qubits : Quantum information carrier
Quantum light-matter interaction
Generation quantum lights and engineering quantum light-matter interaction
Integrated quantum photonics platform
Scalable and Integrated quantum photonics platform
Engineered electronic structures and engineered photonic structuresQuantum systems

Research applications

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

Research Highlight

Engineered quantum light-matter interaction for quantum science

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Quantum photonic integrated devices for quantum applications

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