- AI-driven Automated Attack Response Strategy Generation System
- Development of Value-Added Resource Conversion Technology for Waste Plastic Pyrolysis Products
- Development of Wearable Neuromorphic Heterogeneous Integration Platform for SPAD-fNIRS-Based Pain Signal Quantification
- Identification of Novel Disease Markers Using Depression Patient-Derived iPSCs
- Development of Sustainable and Highly Functional Polymer Synthesis and Application Technologies for Future Mobility Regulatory Compliance
- AI-driven Discovery of Targeted Protein Degraders — CRBN-based Molecular Glue Degraders
- Ultra-Low-Latency Storage-Driven I/O Subsystem for Large Language Models
- Intelligent E-Skin Foundry Platform
- Korea Sustainable Hybrid Intensification for Fractionation Technology (K-SHIFT)
- kaist_prj10
- ARC-H2: Autonomous Robotics-driven Catalysts for Hydrogen with High Durability
- PFAS-free Research Initiative for Macromolecular Energy materials (PRIME)
- Center for Divertor Science and Innovation in Fusion Energy (D-SINE)
- Quantum teleportation with quantum dot photons of different colors using a system of PIC and ASIC
- Development of AI-Based Super-Gap Core Technology for Next-Generation Eco-Friendly Free-Form Displays
- Net-zero Seawater Refinery; An AI-Based Integrated Refinery Platform for Carbon Capture and Resource Recovery from Seawater
- Transcendent Material Innovation of Phase Transition Artificial Muscles for Soft Robotics
- Development of an AX-based Intelligent Disaster Prevention Platform for Ultra-Safe SMR Construction Against Extreme External Hazards
- nEAR-LINK Initiative: In-Ear Affective BCI-AI Research Network
- Center of AI-BASE (Brain Architecture, Simulation & Engineering)
- Spin-based Neuromorphic/Quantum Hardware Platform
- Green Carbon Capture via AI-assisted Chloroplast DNA Editing
- Digital Health Technologies for Prediction and Intervention in Neurodegenerative Diseases
- Development of AI-Biofoundry Integrated Platform for Rapid On-Site Detection of Polycarbonate Microplastics and BPA Upcycling
Quantum teleportation with quantum dot photons of different colors using a system of PIC and ASIC
KEYWORDKeyword
OBJECTIVE Objective
We build photon-based quantum computing hardware and, in the process, develop a measurement-based quantum information processing system
that comprehensively integrates the element technologies of silicon photonics, semiconductor circuits, and quantum-dot photon sources.
Through this process, postdoctoral researchers gain integrated mastery of quantum computing system operation,
producing world-class quantum technology talent that is highly scarce on the global stage.
INTRODUCTION Director's Message
A single key talent can create livelihoods for 100,000 people.
We invite Ph.D. researchers who aspire to become irreplaceable, core talent to join our research group.
We will grow you into a world-class talent in next-AI, the quantum computing.
Applications are open to talent with diverse backgrounds, including semiconductor design, silicon photonics,
packaging, photonics, quantum optics, and device processing.
Even without prior experience in the quantum field, anyone with experience in the above-mentioned related or
adjacent fields can grow into a top expert in quantum technology by joining the InnoCORE research group.
Our research group possesses a quantum computing hardware platform that is unparalleled in the world,
and you can use it to achieve world-first, world-best results.
Please contact us to learn more.
IMPACT Impact
Our research group is developing quantum computing from the perspectives of both technology and commercialization. The achievements of our group lead directly to technology commercialization, startups, and similar outcomes.
TALENT Ideal Talent
Quantum technology talent with integrated expertise in silicon photonics, electronic circuit design, and packaging systems