• Chinese Journal of Lasers
  • Vol. 47, Issue 12, 1201003 (2020)
Song Yanjie1、2, Zong Nan1, Liu Ke1, Tu Wei1, Yang Feng1, Bian Qi1, Shen Yu1, Wang Zhimin1, Bo Yong1、3, Peng Qinjun1、3, and Xu Zuyan1、3
Author Affiliations
  • 1Key Laboratory of Solid State Laser, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China
  • 2University of Chinese Academy of Sciences, Beijing 100049, China
  • 3Key Laboratory of Function Crystal and Laser Technology, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China
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    DOI: 10.3788/CJL202047.1201003 Cite this Article Set citation alerts
    Song Yanjie, Zong Nan, Liu Ke, Tu Wei, Yang Feng, Bian Qi, Shen Yu, Wang Zhimin, Bo Yong, Peng Qinjun, Xu Zuyan. Nanosecond Pulse Width Stretched Q-Switched Nd∶YAG Green Lasers Based on a Multipass Cavity[J]. Chinese Journal of Lasers, 2020, 47(12): 1201003 Copy Citation Text show less
    Experimental setup for generating the pulse width stretched 532 nm Nd∶YAG green laser based on MPC technology, in which the upper right diagram shows the beam spot pattern on mirrors M4 and M5
    Fig. 1. Experimental setup for generating the pulse width stretched 532 nm Nd∶YAG green laser based on MPC technology, in which the upper right diagram shows the beam spot pattern on mirrors M4 and M5
    Extended cavity length ΔL introduced by MPC flat concave cavity versus m and n
    Fig. 2. Extended cavity length ΔL introduced by MPC flat concave cavity versus m and n
    Output power at 1064 nm versus pump power with MPC (solid squares) and without MPC (solid circles)
    Fig. 3. Output power at 1064 nm versus pump power with MPC (solid squares) and without MPC (solid circles)
    Variation of the pulse width at 1064 nm with the pump power at 808 nm with MPC (solid squares) and without MPC (solid circles) and the corresponding fit for the experimental data
    Fig. 4. Variation of the pulse width at 1064 nm with the pump power at 808 nm with MPC (solid squares) and without MPC (solid circles) and the corresponding fit for the experimental data
    Pulse width in a Q-switch laser versus cavity length under the maximum pump power
    Fig. 5. Pulse width in a Q-switch laser versus cavity length under the maximum pump power
    Output power at 532 nm and SHG efficiency versus input power at 1064 nm, in which the solid squares and solid circles represent the experimental data for the cavity with MPC and without MPC, and the inset is measured spectrum of the 532 nm laser at the maximum output power
    Fig. 6. Output power at 532 nm and SHG efficiency versus input power at 1064 nm, in which the solid squares and solid circles represent the experimental data for the cavity with MPC and without MPC, and the inset is measured spectrum of the 532 nm laser at the maximum output power
    Experimental and theoretical pulse width of 532 nm laser versus input power at 1064 nm, in which the crosses are the measured data, the solid squares and solid circles are the corresponding calculated results with MPC and without MPC, respectively, the dashed lines represent the corresponding fit for the calculated results, and the insets show typical pulse waveforms corresponding to the points indicated by adjacent arrows
    Fig. 7. Experimental and theoretical pulse width of 532 nm laser versus input power at 1064 nm, in which the crosses are the measured data, the solid squares and solid circles are the corresponding calculated results with MPC and without MPC, respectively, the dashed lines represent the corresponding fit for the calculated results, and the insets show typical pulse waveforms corresponding to the points indicated by adjacent arrows
    Typical pulse sequence from 532 nm laser operating with MPC at the output power of 6.5 W, in which the inset is 2D spatial intensity profile of the output laser at Pout=6.5 W
    Fig. 8. Typical pulse sequence from 532 nm laser operating with MPC at the output power of 6.5 W, in which the inset is 2D spatial intensity profile of the output laser at Pout=6.5 W
    Song Yanjie, Zong Nan, Liu Ke, Tu Wei, Yang Feng, Bian Qi, Shen Yu, Wang Zhimin, Bo Yong, Peng Qinjun, Xu Zuyan. Nanosecond Pulse Width Stretched Q-Switched Nd∶YAG Green Lasers Based on a Multipass Cavity[J]. Chinese Journal of Lasers, 2020, 47(12): 1201003
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