Undergraduate Program Development Features
1. Cultivating foundational talent in photonics technology, with directions including:
(1) Photonic Devices, Materials, and Manufacturing Processes
(2) Photonic Precision Measurement
(3) Optical Communications and Optical Information
These three fields
2. Training students to become professional photonics talent with both theoretical knowledge and practical skills.
3. Recommending outstanding students for early completion of an integrated four-year bachelor's program plus one-year master's program, enabling them to obtain both bachelor's and master's degrees.
Master's/Doctoral Program Features
Group A: Semiconductor photonic devices and materials, flat panel displays (liquid crystal and organic light-emitting devices), semiconductor IC manufacturing processes, solar cell devices and materials, nanomaterials, biomedical materials, sensing materials, photonic polymer materials.
Group B: Broad optical/electronic system integration and applications, innovative semiconductor processes, nanotechnology and biomedical photonics, photonic integrated circuit design, advanced photonic physics/materials/simulation, optical design and photonic instrumentation, micro-opto-electro-mechanical systems, microwave/fiber optic communications/detection systems, micro-energy research and applications, photonic precision measurement and applications, photonic coherent control, 3D dynamic displays, chlorophyll-based cells and energy engineering, magnetic levitation solar power generation, plasma physics and applications, photoexcited protein theory and experimentation, color cryptography and virtual reality, cross-disciplinary industry-academia collaboration.
Department of Electro-Optical Engineering, NFU