Wang Deen, Zhang Xin, Yang Ying, Deng Xuewei, Dai Wanjun, Sun Chuang, Zheng Yamin, Hu Dongxia, Jing Feng, Yuan Qiang, Huang Lei
Appl Opt. 2020 Aug 10;59(23):6848-6860. doi: 10.1364/AO.394621.
In high-power laser facilities, the application of a traditional wavefront control method is limited under the influence of a continuous phase plate (CPP). In order to obtain a satisfactory far-field intensity distribution at the target of the beamline with the CPP, a novel deformable mirror (DM) resolution-matching-based two-stage wavefront sensorless adaptive optics method is proposed and demonstrated. The principles of the DM resolution-matching method and two-stage wavefront sensorless adaptive optics method are introduced, respectively. Based on the numerical model, the matching relationship between the actuator space of the DM and the spatial period of the CPP is investigated. By using the resolution-matched DM, the feasibility of the two-stage wavefront sensorless adaptive optics method is numerically and experimentally verified. Both the numerical and the experimental results show that the presented DM resolution-matching-based two-stage wavefront sensorless adaptive optics method could achieve the target focal spot control under the influence of the CPP, and the profile and the intensity uniformity of the corrected focal spot are optimized close to the designed ideal focal spot.
在高功率激光装置中,传统波前控制方法的应用在连续相位板(CPP)的影响下受到限制。为了在带有CPP的光束线靶上获得令人满意的远场强度分布,提出并演示了一种基于新型变形镜(DM)分辨率匹配的两级无波前传感器自适应光学方法。分别介绍了DM分辨率匹配方法和两级无波前传感器自适应光学方法的原理。基于数值模型,研究了DM的致动器空间与CPP的空间周期之间的匹配关系。通过使用分辨率匹配的DM,对两级无波前传感器自适应光学方法的可行性进行了数值和实验验证。数值和实验结果均表明,所提出的基于DM分辨率匹配的两级无波前传感器自适应光学方法能够在CPP的影响下实现目标焦斑控制,并且校正后焦斑的轮廓和强度均匀性得到优化,接近设计的理想焦斑。