Development and Application of Laser Technology in Engineering Technology Research Center

Recently, the Fujian Provincial Laser Technology Integration and Application Engineering Technology Research Center and the Fujian Provincial Semiconductor Materials Testing and Research Technology Public Service Platform established by the Fujian Institute of Material Structure, Chinese Academy of Sciences, passed the evaluation organized by the Provincial Science and Technology Department and were officially licensed.

Fujian Provincial Laser Technology Integration and Application Engineering Technology Research Center conducts discipline layout according to scientific frontiers, strategic high technology and engineering, focusing on the fields of photoelectric functional materials, laser technology integration and applications. In the field of optoelectronic functional materials and devices, the center aims at the forefront of scientific development in the field of optoelectronics, expands the research direction of optoelectronic functional crystals, and realizes the extension of crystal materials and devices to the downstream of the optoelectronic information industry and the application in important projects related to national security; In terms of technology integration and application, it focuses on the development of deep ultraviolet and mid-infrared lasers, high-energy, high-pulse peak power lasers, ultrafast lasers, high-stable frequency single-frequency lasers, and all-solid-state laser technologies and system integration technologies to meet the importance of national large scientific devices Urgent demand, playing an important role in laser micro-nano manufacturing, high-power laser macro manufacturing, high-precision laser sensor detection and other application fields.

Fujian Provincial Semiconductor Material Testing and Research Technology Public Service Platform provides a high level of support for the development and application of key technologies for solar-grade metallurgical silicon materials, third-generation wide-bandgap ZnO-based, GaN-based semiconductor materials, and new wide-bandgap semiconductor materials platform. The platform is divided into two parts: solar-grade silicon material standard analysis and testing system, semiconductor material and device physical mechanism research system. Among them, the solar-grade silicon material comprehensive testing laboratory has obtained CMA measurement certification and has a variety of domestic and foreign leading or domestic unique The testing and analysis instruments play an important role in the purification of silicon materials and the study of the mechanism of semiconductor devices.

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