Dalin Sun

Position
Associate Professor
Profile
He is engaged in research on the synthesis of microporous zeolite materials, advanced carbon nanotube materials, mid infrared lasers, high-power fiber lasers, and other related fields. Utilizing the excellent optical properties of carbon materials, he has successively developed ultrafast pulse lasers in various bands and cooperated with the municipal government to jointly develop and implement research results. In the past five years, he has published multiple SCI papers, applied for relevant invention patents, participated in the National Natural Science Foundation of China, Guangdong Province High tech Talent Project, Shenzhen Basic Research Project, and hosted a fund from the Shenzhen Science and Technology Innovation Committee.
Research Interest
Ultrafast fiber laser; Carbon nanotubes; Microporous zeolite.
E-mail
sundalin@sztu.edu.cn
Telephone
-

1. Education And Work Experience

Ø Education Experience

l 2012-2016, Shandong University, Material Forming and Control Engineering

l 2016-2021, Shenzhen University, Optical Engineering


Ø Work Experience

l 2021-2024, Shenzhen Technology University, postdoctor

l 2024-Present, Shenzhen Technology University, Sino-german College of Intelligent ManufacturingAssistant Professor


2. Research Field and Achievements

[1] Sun DL, Ruan SC, et al. Generation of Ultra-High Signal to Noise Ratio Harmonics in an All-Polarization-Maintaining Fiber Laser[J]. Journal of Lightwave Technology, 2023, 41(1): 255-64.

[2] Sun DL, Ruan SC, et al. Broadband Q-switched pulse modulation of the zeolite based single wall carbon nanotube [J]. Optics and Laser Technology, 2023, 162.

[3] Sun DL, Ruan SC, et al. Multiple Bound State Soliton Pulses in the All Polarization Maintaining Fiber Laser [J]. Micromachines,2023, 14(8).

[4] Sun DL, Xu XT, et al. Passively Q-switched ytterbium-doped fiber laser based on a SWCNT@AFI saturable absorber [J]. Optics and Laser Technology,2021,136: 106781.

[5] Chu SW, Sun DL, et al. Passively mode-locked thulium-doped fiber laser based on a SWCNTs@AFI saturable absorber [J]. Infrared Physics and Technology, 2023, 128,104479.


3. Teaching Summary

l Electromagnetic Fields and Waves;

l Optoelectronic Display Technology;

l Advanced Language Programming;

l Undergraduate Graduation Design