光学
波前
激光器
失真(音乐)
材料科学
热的
热膨胀
物理
光电子学
CMOS芯片
气象学
冶金
放大器
作者
Yanjie Song,Yuanzhai Xu,Shuai Meng,Xingxing Jiang,Chong-Feng Shao,Ze-Xin Song,Nan Zong,Zhimin Wang,Yong Bo,Xiaojun Wang,Zheshuai Lin,Qinjun Peng
出处
期刊:Optics Letters
[Optica Publishing Group]
日期:2021-04-28
卷期号:46 (10): 2425-2425
被引量:9
摘要
High-power solid-state lasers with good beam quality are attracting great attention on account of their important applications in industry and military. However, the thermal effects generated in the laser host materials seriously limit power scaling and degrade the beam quality. Thermal lensing and thermally induced wavefront deformation are the main causes of the beam quality deterioration. Here we investigate the performance of a zero thermal expansion (ZTE) solid-state laser gain material. In a proof-of-principle experiment, an a -cut rod N d : Y A l O 3 (Nd:YAP) perovskite crystal is chosen to be the gain medium for ZTE around 180 K. The laser performance spanning the temperature range from 80 to 290 K is studied. The maximum output power and minimum threshold pump power were obtained at a temperature of 180 K. Moreover, the measured thermal focal power and peak-to-valley value of the wavefront distortion also reach a minimum at this temperature, an additional benefit from the crystal’s ZTE coefficient. We envisage that these results will open a new route towards the development of high-power and high-beam-quality lasers through the use of ZTE gain materials.
科研通智能强力驱动
Strongly Powered by AbleSci AI