Yu Xin, Dong Lizhi, Lai Boheng, Yang Ping, Chen Shanqiu, Liu Wenjin, Wang Shuai, Tang Guomao, Qiu Jisi, Kang Zhijun, Liu Yueliang, Liu Hao, Liu Yong, Fan Zhongwei, Xu Bing
Opt Lett. 2017 Jul 15;42(14):2730-2733. doi: 10.1364/OL.42.002730.
In this Letter, we present an adaptive aberration correction system to simultaneously compensate for aberrations and reshaping the beams. A low-order aberration corrector is adapted. In this corrector, four lenses are mounted on a motorized rail, whose positions can be obtained using a ray tracing method based on the beam parameters detected by a wavefront sensor. After automatic correction, the PV value of the wavefront is reduced from 26.47 to 1.91 μm, and the beam quality β is improved from 18.42 to 2.86 times that of the diffraction limit. After further correction with a deformable mirror, the PV value of the wavefront is less than 0.45 μm, and the beam quality is 1.64 times that of the diffraction limit. To the best of our knowledge, this is the highest performance from such a high-power, high-pulse repetition rate Nd:YAG solid-state laser ever built.
在本信函中,我们展示了一种自适应像差校正系统,用于同时补偿像差并重塑光束。采用了一种低阶像差校正器。在该校正器中,四个透镜安装在电动导轨上,其位置可通过基于波前传感器检测到的光束参数的光线追迹方法获得。自动校正后,波前的峰谷(PV)值从26.47减小到1.91μm,光束质量β提高到衍射极限的18.42倍至2.86倍。在用变形镜进一步校正后,波前的PV值小于0.45μm,光束质量为衍射极限的1.64倍。据我们所知,这是有史以来建造的这种高功率、高脉冲重复率Nd:YAG固体激光器的最高性能。