Frequency-doubling Study of Noncritical Phase-matched LBO Crystal
Song Hai-ping
Abstract
Song Hai-ping
Abstract
The extracavity-doubling experiment of Nd: YAG ns laser was performed using LBO crystal. In the experiment, the type-I noncritical phase-matched (NCPM) LBO crystal was used with temperature tuned. Through the comparison between the theory of frequency-doubling conversion efficiency and temperature tuning and the experimental data, the experimental results are shown consistent to the theory. When the power of fundamental frequency laser is 1.3J, the output 532 nm frequency-doubling green laser with the power of 840 mJ is obtained. The highest conversion efficiency is up to 65%. The energy instability of frequency-doubling is less than +3%.
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The extracavity-doubling experiment of Nd: YAG ns laser was performed using LBO crystal. In the experiment, the type-I noncritical phase-matched (NCPM) LBO crystal was used with temperature tuned. Through the comparison between the theory of frequency-doubling conversion efficiency and temperature tuning and the experimental data, the experimental results are shown consistent to the theory. When the power of fundamental frequency laser is 1.3J, the output 532 nm frequency-doubling green laser with the power of 840 mJ is obtained. The highest conversion efficiency is up to 65%. The energy instability of frequency-doubling is less than +3%.
Key concepts: Laser, Energy conversion efficiency, Crystal (programming language), Materials science, Power (physics), Optics, Phase (matter), Frequency conversion