实验利用YAG/Nd∶YAG/Cr4+∶YAG键合晶体和光子晶体光栅镜获得高峰值功率和高光束质量的被动调Q径向脉冲激光输出,激光器的输出功率达到435 m W,斜率效率为14.7%。在吸收抽运功率为6.8 W时,输出激光脉冲的峰值功率达到15.7 k W,脉冲能...实验利用YAG/Nd∶YAG/Cr4+∶YAG键合晶体和光子晶体光栅镜获得高峰值功率和高光束质量的被动调Q径向脉冲激光输出,激光器的输出功率达到435 m W,斜率效率为14.7%。在吸收抽运功率为6.8 W时,输出激光脉冲的峰值功率达到15.7 k W,脉冲能量达到50.1 m J,脉冲宽度为3.2 ns,重复频率为8.1 k Hz,径向偏振纯度为95.8%。实验中的晶体均采用<111>的切割方向,输出径向偏振光束的均匀性得到提高。展开更多
We propose and demonstrate a laser-diode-pumped, maglev rotating Nd:YAG disk laser. The disk of the laser crystal is attached to a maglev pyrolytic graphite disk and is rotated by compressed gas. In this rotating dis...We propose and demonstrate a laser-diode-pumped, maglev rotating Nd:YAG disk laser. The disk of the laser crystal is attached to a maglev pyrolytic graphite disk and is rotated by compressed gas. In this rotating disk laser, the detrimental thermal effects are alleviated and the laser can be operated in the single transverse electromagnetic (TEM)_(00) mode with high brightness. In our proof-of-concept experiment, we achieve a 17.7 mW laser output at 447 mW of absorbed pump power and a ~4 Hz rotation frequency.展开更多
文摘实验利用YAG/Nd∶YAG/Cr4+∶YAG键合晶体和光子晶体光栅镜获得高峰值功率和高光束质量的被动调Q径向脉冲激光输出,激光器的输出功率达到435 m W,斜率效率为14.7%。在吸收抽运功率为6.8 W时,输出激光脉冲的峰值功率达到15.7 k W,脉冲能量达到50.1 m J,脉冲宽度为3.2 ns,重复频率为8.1 k Hz,径向偏振纯度为95.8%。实验中的晶体均采用<111>的切割方向,输出径向偏振光束的均匀性得到提高。
基金supported by the National Natural Science Foundation of China under Grant Nos.61275206 and 61475166
文摘We propose and demonstrate a laser-diode-pumped, maglev rotating Nd:YAG disk laser. The disk of the laser crystal is attached to a maglev pyrolytic graphite disk and is rotated by compressed gas. In this rotating disk laser, the detrimental thermal effects are alleviated and the laser can be operated in the single transverse electromagnetic (TEM)_(00) mode with high brightness. In our proof-of-concept experiment, we achieve a 17.7 mW laser output at 447 mW of absorbed pump power and a ~4 Hz rotation frequency.