Location History:
- Shenzhen, CN (2017 - 2021)
- Guangdong, CN (2019 - 2022)
Company Filing History:
Years Active: 2017-2022
Title: Haizhe Zhong: Innovator in Optical Parametric Amplification
Introduction
Haizhe Zhong is a prominent inventor based in Guangdong, China. He has made significant contributions to the field of laser technology, particularly in the development of optical parametric amplifiers. With a total of 4 patents to his name, Zhong's work has advanced the capabilities of laser systems.
Latest Patents
Zhong's latest patents include a "Broadband Optical Parametric Chirped Pulse Amplifier Insensitive to Temperature." This invention features a configuration that allows for broadband parametric amplification of signal light while remaining insensitive to both wavelength and temperature. The design incorporates a first pulsed laser, a second pulsed laser, a pulse stretcher, and a periodically poled nonlinear crystal.
Another notable patent is the "Dual-Chirped Spectral Optical Parametric Amplifier and Amplification Method." This invention utilizes a femtosecond laser assembly to generate simultaneous pump and signal waves. The design allows for full-spectrum optical parametric amplification, resulting in an ultrabroad idler wave that can be transformed into an ultra-short pulsed laser with a long wavelength.
Career Highlights
Haizhe Zhong is affiliated with Shenzhen University, where he continues to push the boundaries of laser technology. His innovative work has garnered attention in the scientific community, contributing to advancements in optical amplification techniques.
Collaborations
Zhong has collaborated with notable colleagues, including Ying Li and Dianyuan Fan. Their joint efforts have further enriched the research and development in the field of laser technology.
Conclusion
Haizhe Zhong's contributions to optical parametric amplification demonstrate his expertise and commitment to innovation in laser technology. His patents reflect a deep understanding of the complexities involved in creating efficient and effective laser systems.