Location History:
- Los Angeles, CA (US) (1999 - 2001)
- Ocean, NJ (US) (2002)
Company Filing History:
Years Active: 1999-2002
Title: Innovations of Jin-Xing Cai in Optical Dispersion Technologies
Introduction
Jin-Xing Cai is a prominent inventor based in Ocean, NJ, known for his significant contributions to the field of optical dispersion technologies. With a total of three patents to his name, he has developed innovative techniques that enhance the performance of optical systems.
Latest Patents
Cai's latest patents include groundbreaking work on the tuning of optical dispersion using a tunable fiber Bragg grating. This invention involves techniques and devices based on a wave-guiding element that features a spatial grating pattern, which varies oscillatory along its optic axis. The wave-guiding element is designed to receive an input optical signal and produce an output optical signal through reflection within a Bragg reflection band. This process results in time delays of different reflected spectral components, which are a nonlinear function of spatial positions along the optic axis. Additionally, Cai has developed a nonlinearly chirped fiber grating aimed at achieving tunable dispersion compensation, polarization mode dispersion, and optical pulse manipulation. This invention can be implemented in fiber communication systems to enhance their efficiency.
Career Highlights
Cai is affiliated with the University of Southern California, where he continues to push the boundaries of optical technology. His work has garnered attention for its practical applications in improving communication systems and optical devices.
Collaborations
Cai has collaborated with notable colleagues, including Kai-Ming Feng and Alan Eli Willner, contributing to advancements in the field through shared expertise and innovative research.
Conclusion
Jin-Xing Cai's contributions to optical dispersion technologies exemplify the impact of innovative thinking in the field of optics. His patents reflect a commitment to enhancing the functionality of optical systems, paving the way for future advancements.