Tang Pinghua, Liu Jun, Huang Bin, Xu Changwen, Zhao Chujun, Wen Shuangchun
Opt Express. 2015 May 4;23(9):11037-42. doi: 10.1364/OE.23.011037.
A stable and wavelength-locked Q-switched narrow-linewidth Er:YAG laser with compact cavity structure, utilizing a volume Bragg grating (VBG) as a wavelength selector and a pump input mirror simultaneously, is reported. It yields high energy nanosecond pulse with pulse duration of 185 ns and pulse energy of 1.36 mJ at 1 kHz pulse repetition frequency for incident pump power of 21.6 W. The central wavelength of the Er:YAG laser is locked at 1645.3 nm with a spectral 3-dB linewidth of less than 0.08 nm, which coincides to the methane (CH4) absorption-line. The output has near diffraction-limited beam quality with M2 parameter of 1.08. Our work may provide an inroad for developing more miniaturized space-based integrated path differential absorption (IDPA) lidar transmitter.
报道了一种具有紧凑腔结构的稳定且波长锁定的调Q窄线宽Er:YAG激光器,它同时利用体布拉格光栅(VBG)作为波长选择器和泵浦输入镜。对于21.6 W的入射泵浦功率,在1 kHz脉冲重复频率下,它产生脉宽为185 ns、脉冲能量为1.36 mJ的高能量纳秒脉冲。Er:YAG激光器的中心波长锁定在1645.3 nm,光谱3 dB线宽小于0.08 nm,这与甲烷(CH4)吸收线重合。输出具有接近衍射极限的光束质量,M2参数为1.08。我们的工作可能为开发更小型化的天基积分路径差分吸收(IDPA)激光雷达发射器开辟道路。