LD side-pumped Nd∶GdVO_4 532 nm green laser
Jianxin Cheng
Abstract
Jianxin Cheng
Abstract
To acquire high-power narrow-width 532 nm green laser,we used the acousto-optic driving Q-switched synchronization technology with high repetition rate and the laser diode(LD) side-pumped Nd∶GdVO4 laser to get high-power linearly polarized 1 064 nm laser output.We achieved high-power green laser output by intra-cavity frequency doubling and KTP non-linear frequency conversion.As the input current was 30 A and the Q-switched frequency was 10 kHz,we got the 1 064 nm polarized laser output with maximum power of 30 W and narrow width of 30 ns,and the 532 nm green laser output from KTP crystal with the maximum power of 23.4 W.Conversion efficiency of 1 064 nm to 532 nm was 78%.Experiment results indicate that the acousto-optic Q-switched technology and LD side-pumped Nd∶GdVO4 laser in tandem technology can be used to obtain high repetition frequency 1064nm polarized laser,and the high-power 532 nm green laser can be output by KTP non-linear frequency conversion.
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To acquire high-power narrow-width 532 nm green laser,we used the acousto-optic driving Q-switched synchronization technology with high repetition rate and the laser diode(LD) side-pumped Nd∶GdVO4 laser to get high-power linearly polarized 1 064 nm laser output.We achieved high-power green laser output by intra-cavity frequency doubling and KTP non-linear frequency conversion.As the input current was 30 A and the Q-switched frequency was 10 kHz,we got the 1 064 nm polarized laser output with maximum power of 30 W and narrow width of 30 ns,and the 532 nm green laser output from KTP crystal with the maximum power of 23.4 W.Conversion efficiency of 1 064 nm to 532 nm was 78%.Experiment results indicate that the acousto-optic Q-switched technology and LD side-pumped Nd∶GdVO4 laser in tandem technology can be used to obtain high repetition frequency 1064nm polarized laser,and the high-power 532 nm green laser can be output by KTP non-linear frequency conversion.
Key concepts: Laser, Materials science, Green laser, Optics, Energy conversion efficiency, Laser power scaling, Power (physics), Laser diode