Zhengqun Xue | Optical Sensing | Best Researcher Award

Prof. Zhengqun Xue | Optical Sensing | Best Researcher Award

Researcher at Fuzhou University, China

πŸ”¬ Prof. Zhengqun Xue holds a Ph.D. in Condensed Matter Physics, specializing in Optical Communication and Sensing. With over 15 years of R&D experience, he has led innovations in high-speed DFB lasers, optical amplifiers, and 5G/6G photonic chips. Formerly with Fujian Z.K. Litecore and Shanghai Xinwei Semiconductor, he is now a researcher and master’s supervisor at Fuzhou University. πŸ“‘ He has published 11+ SCI/EI papers, holds 30+ invention patents, and has led national-level projects. πŸ† His work has earned awards like the “China IC” Innovation Award and supports tech giants like Huawei and ZTE.

Publication Profile

Orcid

πŸŽ“ Education Background

Prof. Zhengqun Xue has built a solid academic foundation in the field of physics and condensed matter. He earned his Bachelor’s degree in Physics from Xiamen University (2003–2007) πŸŽ“, followed by a Master’s degree in Condensed Matter Physics from the same institution (2007–2010) πŸ”¬. Further advancing his expertise, he obtained a Ph.D. in Condensed Matter Physics from the prestigious University of Chinese Academy of Sciences (2014–2017) πŸ§ͺ. His academic journey laid the groundwork for his groundbreaking research in optical communication and sensing technologies.

πŸ’Ό Professional Experience

Prof. Zhengqun Xue has extensive industry and academic experience in photonic chip development. From 2010 to 2022, he served as R&D Lead for Photonic Chips at Fujian Z.K. Litecore Co., Ltd., driving innovations in optoelectronic devices πŸ”¬. In 2022, he joined Shanghai Xinwei Semiconductor as Director of Photonic Chip R&D, leading cutting-edge research and product development βš™οΈ. Since September 2023, he has been a Researcher and Master’s Supervisor at the School of Advanced Manufacturing, Fuzhou University, where he mentors students and advances research in optical communication technologies

πŸ† Honors & Awards

Prof. Zhengqun Xue has been widely recognized for his outstanding contributions to photonic chip innovation and optical communication technologies. In 2022, he was honored as an Outstanding Young Talent under the Fujian Province Eagle Plan 🌟. He also led projects that earned the “China IC” Outstanding Technological Innovation Product Award twice β€” in 2021 (16th edition) and 2019 (14th edition), awarded by the Ministry of Industry and Information Technology of China πŸ…. These accolades underscore his leadership and groundbreaking work in high-performance photonic device development and semiconductor research πŸ”¬

πŸ”¬ Research Focus

Prof. Zhengqun Xue’s research is centered on optoelectronic devices, with a strong focus on semiconductor lasers, laser physics, and photonic chip engineering πŸ’‘. His work explores high-power DFB lasers, temperature tuning in InP-based lasers, and advanced doping techniques for GaN LEDs πŸŒ‘οΈπŸ”. These studies contribute to advancements in optical communication, laser sensing, and next-generation photonic integration πŸš€πŸ“‘. His publications in SCI and EI-indexed journals highlight his role in shaping efficient, high-performance light-emitting technologies, critical for 5G/6G networks, sensing systems, and silicon photonics πŸ“˜πŸ”§. His research bridges applied physics and industry innovation seamlessly.

Publications Top Notes

  • “1.55ΞΌm High-Power Single Transverse Mode Semiconductor Laser”
    πŸ“… Published: 2024
    πŸ“˜ Journal: Chinese Journal of Luminescence, 45(07): 1189–1195 (EI)
    πŸ“ˆ Citation Count: Data not available
    πŸ”— Link to article

  • “Temperature Effects on Wavelength Blue Shift of InP Lasers”
    πŸ“… Published: 2018
    πŸ“˜ Journal: Acta Photonica Sinica, 47(1): 0125002 (EI)
    πŸ“ˆ Citation Count: Data not available
    πŸ”— Link to article

  • “Laser-Induced Zn Doping in GaN-Based Light-Emitting Diodes”
    πŸ“… Published: 2010
    πŸ“˜ Journal: Applied Physics Letters, 96: 141101 (SCI)
    πŸ“ˆ Citation Count: Data not available

Vladimir Shiryaev | Middle Infrared Glasses And Fibers Award | Best Researcher Award

Prof Dr. Vladimir Shiryaev | Middle Infrared Glasses And Fibers Award | Best Researcher Award

Prof Dr. Vladimir Shiryaev, FSBSI G G Devyatykh Institute of Chemistry of High-Purity Substances of the Russian Academy of Sciences, Russia

Prof. Dr. Vladimir Shiryaev πŸŽ“ is a leading scientist specializing in the chemistry of high-purity glasses and fibers. With an extensive academic journey, including a Ph.D. and D.Sc. in Chemistry, he has held various roles at the Institute of Chemistry of High-Purity Substances, Russian Academy of Sciences. As Deputy Director, he leads the Laboratory of Chemistry of High-Purity Non-Oxide Glasses. His international collaborations span France, Brazil, and the UK, contributing significantly to research projects and publications. Awarded for his innovations, including As-Se-Te glass fibers, his expertise shapes advancements in optical materials worldwide.

 

Publication Profile

πŸŽ“ Academic Journey

Vladimir Shiryaev pursued his academic journey at Nizhny Novgorod State University, earning an M.Sc. in Physics in 1983. He continued his studies, completing a Ph.D. in Chemistry in 1992 and a D.Sc. in 2007, both from the Institute of Chemistry of High-Purity Substances, Russian Academy of Sciences.

🏒 Employment History

Beginning as a student in 1978, Shiryaev progressed through various roles, including engineer and senior engineer at notable institutions like the Nizhny Novgorod’s Research Institute of Radiocommunication and the Institute of Chemistry of the Academy of Sciences of USSR.Awards

Awards

Shiryaev’s contributions were acknowledged with a diploma and bronze medal for his innovative work on As-Se-Te glass fibers.

 

Research Focus

πŸ”¬ Vladimir Shiryaev’s research primarily focuses on the development and advancement of chalcogenide optical fibers for mid-infrared (Mid-IR) sensing applications. His contributions span various aspects, including thermal lensing, laser-induced damage, controlled crystallization, and preparation of high-purity chalcogenide glasses. Through international collaborations and numerous publications, he explores the optical properties of chalcogenide glasses, their application in fiber optics, and the utilization of rare earth elements as dopants. Shiryaev’s work is instrumental in pushing the boundaries of Mid-IR spectroscopic sensing, enabling advancements in fields such as environmental monitoring, biomedical diagnostics, and industrial process control.

 

Publication Top Notes