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实现毫焦耳级绿色脉冲的LED泵浦Nd:YAG调Q激光器的能量放大与模式质量提升

Energy scale-up and mode-quality enhancement of the LED-pumped Nd:YAG Q-switched laser achieving a millijoule green pulse.

作者信息

Cho Chun Yu, Pu Chi Chih, Chen Yung Fu, Su Kuan Wei

出版信息

Opt Lett. 2019 Jul 1;44(13):3202-3205. doi: 10.1364/OL.44.003202.

Abstract

An efficient LED pumping module is explored for the demonstration of energy scaling of passively Q-switched output to millijoule high-pulse-energy level. For the free-running operation at fundamental wavelength, the highest optical conversion efficiency of 23.7% is reached. By using a Cr:YAG crystal as the saturable absorber, the passively Q-switched output energy is up to 14.5 mJ in a compact setup. The laser resonator is further optimized to shorten the output pulse width and to obtain better mode quality. The pulse width of the Q-switched emission is as short as 25 ns, and the peak power is up to 0.7 MW. With such a highly efficient configuration, the extracavity second-harmonic generation at 532 nm can be achieved with 4.5 mJ pulse energy.

摘要

为了将被动调Q输出的能量扩展到毫焦级高脉冲能量水平,人们探索了一种高效的LED泵浦模块。对于基波波长下的自由运转操作,实现了23.7%的最高光转换效率。通过使用Cr:YAG晶体作为可饱和吸收体,在紧凑的装置中被动调Q输出能量高达14.5 mJ。进一步优化激光谐振器以缩短输出脉冲宽度并获得更好的模式质量。调Q发射的脉冲宽度短至25 ns,峰值功率高达0.7 MW。采用这种高效配置,在532 nm处可实现4.5 mJ脉冲能量的腔外二次谐波产生。

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