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作 者:白茜 张煜邦 胡明勇[1,2] 封志伟 徐剑锋[1,2] 陈光宇 崔金龙 Bai Qian;Zhang Yubang;Hu Mingyong;Feng Zhiwei;Xu Jianfeng;Chen Guangyu;Cui Jinlong(Academy of Opto-Electric Technology,Hefei University of Technology,Heifei 230009,Anhui,China;Special Display and Imaging Technology Innovation Center of Anhui Province,Heifei 230009,Anhui,China)
机构地区:[1]合肥工业大学光电技术研究院,安徽合肥230009 [2]特种显示与成像技术安徽省技术创新中心,安徽合肥230009
出 处:《激光与光电子学进展》2023年第7期268-272,共5页Laser & Optoelectronics Progress
摘 要:为了完成大口径高次非球面的面形精度检测,提出一种双球面反射式补偿检测系统设计方法。选择与边缘相切的球面为最佳比较球面,拟合出外径为860 mm、中孔为200 mm的高次非球面镜的非球面梯度与法线像差。基于三级像差理论推导补偿检测系统公式,计算出初始参数分析补偿效果并改进优化得到最终结构。经光学软件仿真模拟系统波前差均方根(RMS)小于1/90λ,经过公差分析,98%结果波前差RMS小于1/40λ,满足实际检测要求。该方法能够解决待检高次非球面镜无法检测的难题。This study proposed a design method for a double spherical reflection compensation detection system to detect the surface accuracy of a large aperture high-order aspheric surface.A spherical surface tangent to the edge as the bestcompared sphere was selected.The aspheric gradient and normal aberration of the high-order aspherical mirror was also fitted with an outer diameter of about 860 mm and a middle hole of about 200 mm.The formula of the compensation detection system was derived using the three-stage aberration theory,and was utilized to calculate the initial parameters,analyze the compensation effect,and improve and optimize the final structure.The wavefront root mean square of the system was less than 1/90λby optical software simulation,and 98%tolerance analysis results revealed that the wavefront is less than 1/40λ,which meets the actual detection requirements.This method can solve the problem of inability to detect high-order aspherical mirrors to be inspected.
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