Chinese Journal of Lasers, Volume. 52, Issue 1, 0101002(2025)
High‐Repetition‐Frequency Miniaturized Lightweight 532 nm Laser for Space Applications
[2] Shu R, Kong W. Current status and development of space-based active opto-electronics remote sensing technology[J]. Aerospace Shanghai, 36, 1-14(2019).
[7] Wang J Y, Shu R, Chen W B et al. Laser altimeter on Chang 'e-1 satellite[J]. Scientia Sinica (Physica, 40, 1063-1070(2010).
[9] Cao H Y, Zhang X W, Zhao C G et al. System design and key technolongies of the GF-7 satellite[J]. Chinese Space Science and Technology, 40, 1-9(2020).
[11] Liu Z W, Li Z Q, Su Z G. Detection of constant false alarms based on single-photon counting LiDAR[J]. Chinese Journal of Lasers, 50, 0512002(2023).
[15] Koechner W[M]. Solid-state laser engineering(2002).
[17] Zhang N H, Yao M J, Ge W Q et al. Pulse characteristics of quasi continuous-wave pumped Yb∶KYW/Cr4+∶YAG Q-switched laser[J]. Laser & Optoelectronics Progress, 60, 0714003(2023).
Get Citation
Copy Citation Text
Chao Sheng, Xi Chen, Mingjian Wang, Jiqiao Liu, Zhenzhen Yu, Xia Hou, Weibiao Chen. High‐Repetition‐Frequency Miniaturized Lightweight 532 nm Laser for Space Applications[J]. Chinese Journal of Lasers, 2025, 52(1): 0101002
Category: laser devices and laser physics
Received: Jun. 13, 2024
Accepted: Sep. 9, 2024
Published Online: Jan. 20, 2025
The Author Email: Wang Mingjian (wmjian@siom.ac.cn)
CSTR:32183.14.CJL240962