Semiconductor optoelectronic materials and devices refer to materials and devices that emit, absorb, detect and manipulate light from ultraviolet to Thz wavelength. We will focus on three topics: basic theory of semiconductor optoelectronic materials, material growth and characterization, and device preparation processes and applications. The research content includes but is not limited to:
1. Theoretical predictions of semiconductor optoelectronic materials and structures, waveguide theory of photonic crystals, carrier characteristics of optoelectronic materials, far-field and near-field optical characterization of optoelectronic materials structures , etc..
2. Low-dimensional infrared optoelectronic material epitaxial growth technology, material epitaxial characterization technology, upstream and downstream raw material preparation and purification technology, and controllable and batch preparation technology of optoelectronic materials.
3. Structural design, process preparation technology, packaging technology research and application technology of high-performance quantum light sources, gain light sources, lasers, and detection devices based on low-dimensional material, single crystal materials, quantum dots, quantum wells, superlattice and other structures.
This will provide a professional communication platform for practitioners related to the growth of optoelectronic materials and device preparation, promote their cutting-edge research, improve optical-electrical manipulation at the nanoscale, and promote the application of infrared optoelectronic materials and devices in lasers, detection, communications, sensing and other fields.
Wu Donghai Institute of Semiconductors, CAS
Yang Chengao Institute of Semiconductors ,CAS
Bi Wengang The Chinese University of Hong Kong,Shenzhen
Jin Chaoyuan Zhejiang University
Wu Jiang University of Electronic Science and Technology of China
Chen Yihang Institute of Semiconductors ,CAS
17888841440
chenyihang18@semi.ac.cn