High Power Laser Science and Engineering, Volume. 11, Issue 1, 010000e6(2023)
Diode-pumped high-power continuous-wave intracavity frequency-doubled Pr3+:YLF ultraviolet lasers around 349 nm
Fig. 1. Some spectroscopy properties of the Pr3+:YLF crystal. (a) Major deep red laser transitions of the Pr3+:YLF crystal from 3P0,1,2 to 3F4, 3F3[38]. (b) Emission cross-sections of the Pr3+:YLF crystal in the deep red region.
Fig. 2. (a) Experimental scheme for CW UV lasers. (b) Transmittance curves of the M3 and M4 mirrors.
Fig. 3. Output powers, laser spectrum and
Fig. 4. Simulation results of the 348.7-nm laser output powers under different effective thermal focal lengths. Here, and
are the laser beam sizes in the gain medium and nonlinear crystal, respectively.
Fig. 5. Measured results for the CW discrete tunable UV lasers. (a) Laser output powers at different wavelengths. (b) Laser spectra corresponding to (a). (c) Output powers with respect to the absorbed pump powers of the two lasers with relatively high output powers. (d) -BBO crystal (normal incidence) in the deep red region.
Fig. 6. Simulation results to further understand the wavelength tuning. (a) Round trip TM mode transmittances comparison of using only the 1-mm thick quartz plate and both the plate and the -BBO crystal at the same time. (b) Relative phase-matching angles at different wavelengths of the
-BBO crystal.
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Xiuji Lin, Zheng Zhang, Shuaihao Ji, Run Fang, Bo Xiao, Huiying Xu, Zhiping Cai. Diode-pumped high-power continuous-wave intracavity frequency-doubled Pr3+:YLF ultraviolet lasers around 349 nm[J]. High Power Laser Science and Engineering, 2023, 11(1): 010000e6
Category: Research Articles
Received: Aug. 23, 2022
Accepted: Oct. 25, 2022
Published Online: Feb. 22, 2023
The Author Email: Zhiping Cai (zpcai@xmu.edu.cn)