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折/衍混合民用车载大像面长波红外消热差镜头设计
引用本文:李卓,闫晶,王远方舟,孙权,姜丹. 折/衍混合民用车载大像面长波红外消热差镜头设计[J]. 长春光学精密机械学院学报, 2013, 0(6): 20-23
作者姓名:李卓  闫晶  王远方舟  孙权  姜丹
作者单位:[1]洛阳电光设备研究所,洛阳471023 [2]长春理工大学理学院,长春130022 [3]吉林省科学技术信息研究所,长春130021
摘    要:为满足民用车载红外视觉增强系统的迫切需求,针对384×288型像元尺寸为38μm×38μm的非制冷探测器,利用衍射元件的光热特性采用光学被动式消热差方法设计了一个折/衍混合大像面长波红外消热差镜头,介绍了折/衍光学元件的温度特性及设计消热差系统的原理。通过合理的选择衍射面的基底材料,用CODEV对系统进行优化设计。设计结果表明:系统在工作波段8~12肚m,f=21mm,F数为1.4时在-40℃-80℃的温度范围内调制传递函数MTF大于O.3,符合消热差系统的条件。

关 键 词:衍射元件  光学被动式  消热差

Design of a Hybrid Refractive/Diffractive LIR Athermal Lens for Civilian Vehicle
LI Zhuo,YAN Jing,WANG Yuanfangzhou,SUN Quan,JIANG Dan. Design of a Hybrid Refractive/Diffractive LIR Athermal Lens for Civilian Vehicle[J]. Journal of Changchun Institute of Optics and Fine Mechanics, 2013, 0(6): 20-23
Authors:LI Zhuo  YAN Jing  WANG Yuanfangzhou  SUN Quan  JIANG Dan
Affiliation:3 (1.Luoyang Institute of Electro-optical Equipment, Luoyang 471023; 2.School of Science, Changchun University of Science and Technology, Changchun 130022; 3.Institute of Scientific and Technical Information in Jilin Province, Changchun 130021)
Abstract:In order to meet IR vision enhancement system's urgent need for civilian vechicle, a Hybrid Refractive/Dif- fractive LIR Athermal Lens was designed by using the characteristics both light and thermal of diffractive optical ele- ments and taking measures to the passive optical athermallization method for an uncooled detector with 384×288 pixel and 38μm×38μm, the temperature characteristics of refractive/diffractive optical elements and the theroy of desiging a athermal system was introduced.Through rationally selecting the substrate material of diffractive surface, the system was optimized with CODEV.The result indicated that while the wavelength of the system was 8-12μm, the focal length was 21ram, F number was 1.4, the modulation transfer function (MTF) was greater than 0.3 at the temperature range from -40℃-80℃, the requriments for athermal system was satisfied.
Keywords:diffractive optical elements  passive optical athermallization  athermal
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