Supported by the National Natural Science Foundation of China under Grant Nos 11204160,61378032 and 61211120196;the Shandong Province Science and Technology Research Projects under Grant No 2010GGX10137
An efficient diode-end-pumped actively Q-switched Nd:YLF/SrW04 Raman laser is demonstrated. The fun- damental wave is 1047.0nm and the corresponding first-Stocks wave is 1158.7nm. With a pumping power of 10.5 W, the ...
A laser-diode-pumped high-pulse-energy Nd:LiYF4 master oscillator power amplifier 1053 nm laser system is demonstrated. We design a home-made pump module to homogenize the pump intensity through the ray tracing metho...
Supported by the National Natural Science Foundation of China under Grant No 61205214, and the National High-Technology Research and Development Program of China under Grant No 2014AA093301.
An intracavity frequency doubling electro-optically Q-switched Nd: YLF 523.5 nm laser is developed. An appropriate cylindrical lens is employed in the oscillator to optimize the mode size and to improve the stability...
supported by the National Natural Science Foundation of China(Nos.61275142,91022003,51021062,and 61308042);the China PostdoctoralScience Foundation(No.2013M531594)
We demonstrate a high power continuous-wave (CW) and acoustic-optically (AO) Q-switched 1314-nm laser with a diode-side-pumped Nd:YLF module. A maximum CW output power of 21.6 W is obtained with a diode pump powe...