大视场大相对孔径自由曲面成像系统设计  被引量:7

Design of the freeform imaging system with large field of view and large relative aperture

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作  者:陈炳旭 廖志远[2] 操超 白瑜[2] 牟达[1] Chen Bingxu;Liao Zhiyuan;Cao Chao;Bai Yu;Mu Da(School of Opto-Electronic Engineering,Changchun University of Science and Technology,Changchun 130022,China;Institute of Optics and Electronics,Chinese Academy of Sciences,Chengdu 610209,China)

机构地区:[1]长春理工大学光电工程学院,吉林长春130022 [2]中国科学院光电技术研究所,四川成都610209

出  处:《红外与激光工程》2020年第8期257-265,共9页Infrared and Laser Engineering

基  金:国家自然科学基金(61501429)。

摘  要:近年来,自由曲面在高性能离轴反射成像系统中应用越来越广泛。文中基于矢量像差理论和遗传算法求解初始结构,采用视场离轴和孔径离轴相结合的方式,利用XY多项式描述的自由曲面增大自由度校正离轴像差,设计了一个大视场大相对孔径的制冷型离轴反射光学系统。系统工作波段为长波红外8~12μm,焦距400 mm,F数为2,视场角为8°×5°,平均RMS波像差为0.037054λ(λ=9μm)。探测器冷光阑和光学系统出瞳相匹配,实现100%冷光阑效率,系统能量集中度较高,成像质量良好。In recent years,freeform surfaces have been used increasingly in off-axis reflective imaging systems with high performance levels.In this paper,the cooled off-axis reflection optical system with both a large FOV(field-of-view)and a large relative aperture was designed based on the initial structure from vector aberration theory and genetic algorithm,by using a biased input field and an offset aperture stop,utilizing freeform surfaces described by XY polynomials to increase degrees of freedom to correct off-axis aberrations.The working band of the system was LWIR(long wavelength infrared)8-12μm,the focal length was 400 mm,the F-number was 2,the8°×5°,and the average root mean square(RMS)wavefront error of the system was 0.037054λ(λ=9μm).The detector’s cold stop matches the exit pupil of the optical system which ensure a 100%efficiency of the cold diaphragm.The system has a high energy concentration and a good image quality.

关 键 词:自由曲面成像系统 大视场 大相对孔径 冷光阑匹配 

分 类 号:O436[机械工程—光学工程]

 

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