Photonics Research, Volume. 10, Issue 10, 2287(2022)
High-power wavelength-tunable and power-ratio-controllable dual-wavelength operation at 1319 nm and 1338 nm in a Q-switched Nd:YAG laser
Fig. 1. Schematic diagram of the experimental setup for the 1.3 μm Nd:YAG
Fig. 2. Temporal profile of (a) the pulse trains for LD pump and free running mode, (b) enlarged single pumping pulse and free running laser pulse, (c) the pulse trains for
Fig. 3. Transmission curves at 1319 and 1338 nm versus (a) the tilt angle and (b) temperature of etalon with 1 mm thickness.
Fig. 4. Spectra with a wavelength range from 1300 nm to 1360 nm at different angle of etalon: (a) 0.7 deg, (b) 1.08 deg, (c) 1.21 deg, (d) 1.3 deg, and (e) 1.5 deg.
Fig. 5. Wavelength tuning of (a) 1319 nm and (b) 1338 nm versus the temperature of etalon, and stability measurement of (c) 1319 nm and (d) 1338 nm within 20 min.
Fig. 6. Output power and pulse duration of 1.3 μm
Fig. 7. Measured beam quality and far-field beam profile at the maximum output power.
Fig. 8. Spectra of the red laser at (a) 659 nm for 45°C of LBO, (b) 664 nm for 42°C of LBO, and (c) 669 nm for 58°C of LBO.
Fig. 9. Output power of the red laser as a function of the input power at 1.3 μm.
Fig. 10. Power stability test of red 659 nm laser over 1 h. Inset, 2D beam spatial profile.
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Qi Bian, Yong Bo, Jun-Wei Zuo, Lei Yuan, Hong-Wei Gao, Qin-Jun Peng, "High-power wavelength-tunable and power-ratio-controllable dual-wavelength operation at 1319 nm and 1338 nm in a Q-switched Nd:YAG laser," Photonics Res. 10, 2287 (2022)
Category: Lasers and Laser Optics
Received: May. 20, 2022
Accepted: Jul. 17, 2022
Published Online: Sep. 21, 2022
The Author Email: Yong Bo (boyong@tsinghua.org.cn), Qin-Jun Peng (pengqinjun@mail.ipc.ac.cn)