Company Filing History:
Years Active: 2013
Title: **Innovator Spotlight: Yi-Dong Huang**
Introduction
Yi-Dong Huang is a distinguished inventor based in Beijing, China. With a keen interest in advancing optical technologies, Huang has made notable contributions to the field of plasmonics. His innovative work focuses on hybrid coupling structures that enhance the performance of dielectric waveguides.
Latest Patents
Huang holds a patent titled "Hybrid coupling structure of the short range plasmon polariton and conventional dielectric waveguide, a coupling structure of the long range plasmon polariton and conventional dielectric waveguide, and applications thereof." This patent presents a sophisticated blend of short-range surface plasmon polaritons and conventional dielectric waveguides. The invention outlines a comprehensive design that includes a dielectric substrate layer, a dielectric waveguide layer, a coupling matching layer, and specific components for conducting short-range and long-range surface plasmon polaritons. This innovative structure has potential applications in various optical and communication technologies.
Career Highlights
Throughout his career, Yi-Dong Huang has collaborated with renowned organizations, enhancing his expertise in the field. He has been affiliated with Rohm Co., Ltd., where he contributed to cutting-edge research and development, and Tsinghua University, one of China's prestigious institutions. His work at these companies reflects a strong commitment to advancing technology through research and innovation.
Collaborations
During his professional journey, Huang has partnered with notable colleagues, including Fang Liu and Rui-Yuan Wan. These collaborations have likely enriched his perspective on optical technologies and provided opportunities for engaging in significant research projects.
Conclusion
Yi-Dong Huang stands as an influential figure in the realm of optical innovations, particularly in the area of plasmonics. His patent demonstrates a significant advancement in hybrid coupling structures, which could have substantial implications for the future of optical communication technologies. As he continues to work within esteemed organizations, his contributions are expected to shape the landscape of modern optical research and applications.
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