王琦 Wang Qi朴明旭 Piao Mingxu孟禹彤 Meng Yutong高旭东 Gao Xudong
In order to solve the problems of the large number of components and complex structure in the mid-long wave infrared dual-band system, the structural characteristics of the annular folded imaging system was analyzed, and the calculation method of the obscuration ratio was explained. An infrared dual-band annular aperture ultrathin imaging system with common path was designed. The focal length is 50 mm, the field of view is 14°, and F number is 1. The system is made up of only one optical element, so it has simple structure and compact optical path. The ratio of total optical length to focal length is 0.48. At the spatial frequency of 20 lp/mm, the modulation transfer function (MTF) of the full field of view is more than 0.45 in medium wave infrared 3-5 μm, and that is more than 0.30 in long wave infrared 8-10 μm. The athermalization of system is realized in the range of −40-80 ℃. According to the tolerance results, this system is machinable. The chalcogenide glasses used for the substrate material can be precision molded to achieve batch processing. The study provides a new idea for the realization of low-cost and miniaturized infrared dual-band system.
党更明 Dang Gengming高明 Gao Ming范晨 Fan Chen陈阳 Chen Yang
王少颖 Wang Shaoying蒋世磊 Jiang Shilei张进 Zhang Jin孙国斌 Sun Guobin赵金 Zhao Jin刘卫国 Liu Weiguo周璇 Zhou Xuan魏习江 Wei Xijiang
谢亚峰 Xie Yafeng朴明旭 Piao Mingxu唐金力 Tang Jinli赵渊明 Zhao Yuanming连文泽 Lian Wenze范杰平 Fan JiepingXiaofeng Zhang
贾文波 Jia Wenbo秦天翔 Qin Tianxiang黄蕴涵 Huang Yunhan吕知洋 Lü Zhiyang刘智颖 Liu Zhiying
童英然 Tong Yingran付万琴 Fu Wanqin朴明旭 Piao Mingxu牛群 Niu Qun赵渊明 Zhao Yuanming张贤 Zhang Xian邹慧田 Zou Huitian娄一辰 Lou Yichen王浩然 Wang Haoran胡智明 Hu Zhiming