A Design of Mid-wave Infrared Integral Catadioptric Optical System with Wide FOV

被引:4
|
作者
Yu, Lin Yao [1 ]
Jia, Hong Guang [1 ]
Wei, Qun [1 ]
Jiang, Hu Hai [1 ]
Zhang, Tian Yi [1 ]
Wang, Chao [1 ]
机构
[1] Chinese Acad Sci, Changchun Inst Opt Fine Mech & Phys, Changchun 130033, Peoples R China
关键词
Optical design; R-C systems; Infrared catadioptric; Aspherical; TELESCOPE;
D O I
10.3807/JOSK.2013.17.2.142
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In order to deduce the difficult), of fixing the Ritchey-Chretien (R-C) dual reflective optical system and enhance the stability of the secondary mirror, a compact integral structure is presented here composed of two transmitting and two reflective aspheric surfaces. The four surfaces were manufactured from a single germanium lens and integrated together. The two reflective surfaces formed by coating the inner reflecting films were assembled in one lens. It makes the installation of the two mirrors easier and the structure of the secondary mirror more stable. A design of mid-wave infrared (MWIR) compact imaging system is presented with a spectral range chosen as 3.7-4.8 mu m. The effective focal length is f=90 mm. The field of view (FOV) for the lens is 4.88 degrees. It has good imaging capability with Modulation Transfer Function (MTF) of all field of view more than 0.55 close to the diffraction limitation. Outdoor experiments were carried out and it is shown that the integral catadioptric optical system performs well on imaging.
引用
收藏
页码:142 / 147
页数:6
相关论文
共 50 条
  • [41] Design of uncooled mid-wave infrared detectors based on lead selenide barrier structure
    Su, Leisheng
    Liu, Yun
    Lu, Hong
    Zhang, Heqiu
    Yang, Yiming
    Qiu, Jijun
    JAPANESE JOURNAL OF APPLIED PHYSICS, 2023, 62 (11)
  • [42] Design of a polarization-insensitive broadband achromatic metalens for mid-wave infrared detector
    Meng, Fan long
    Le Liu, Jia
    Yue, Jia Xin
    Qin, Le
    Zhang, Jin Yu
    Li, Xinxin
    Song, Cai Xia
    Zhang, Zhong Shan
    Chen, Hong
    Chang, Yu Chun
    Deng, Zhen
    OPTICS LETTERS, 2024, 49 (19) : 5563 - 5566
  • [43] Dichroic beam splitter for visible, short-wave infrared, and mid-wave infrared
    Mahendra, Rouchin
    Chandra, Ramesh
    OPTICAL ENGINEERING, 2022, 61 (10)
  • [44] Comparison of scene contrast temperature in mid-wave infrared and long-wave infrared
    Jordan, Shane
    Driggers, Ronald
    Furxhi, Orges
    Leslie, Patrick
    Cavanaugh, Col
    Renshaw, Kyle
    Jacobs, Eddie
    OPTICAL ENGINEERING, 2023, 62 (11)
  • [45] Design and performance of curved prism-based mid-wave infrared hyperspectral imager
    Wen, Maoxing
    Wang, Yueming
    Yao, Yi
    Yuan, Liyin
    Zhou, Shiyao
    Wang, Jianyu
    INFRARED PHYSICS & TECHNOLOGY, 2018, 95 : 5 - 11
  • [46] Mid-wave InAs/GaSb superlattice barrier infrared detectors with nBnN and pBnN design
    Gomolka, E.
    Markowska, O.
    Kopytko, M.
    Kowalewski, A.
    Martyniuk, P.
    Rogalski, A.
    Rutkowsk, J.
    Motyka, M.
    Krishna, S.
    BULLETIN OF THE POLISH ACADEMY OF SCIENCES-TECHNICAL SCIENCES, 2018, 66 (03) : 317 - 323
  • [47] Mid-Wave/Long-Wave Infrared Lasers and Their Sensing Applications
    Law, K. K.
    Shori, R.
    Miller, J. K.
    Sharma, S.
    MICRO- AND NANOTECHNOLOGY SENSORS, SYSTEMS, AND APPLICATIONS III, 2011, 8031
  • [48] Mid-wave and long-wave infrared polarimetric phenomenology sensors
    Barnes, Howard
    Burke, Paul
    Caneer, Art
    Dunbar, John
    Jones, Michael W.
    Lewis, Phil
    Mohon, Neil
    IEEE Aerospace Applications Conference Proceedings, 1999, 4 : 87 - 93
  • [49] Design of Large Aperture Four Group Elements Mid-wave Infrared Zoom Lens
    Ji Yiqun
    Shi Rongbao
    He Hucheng
    Shen Weimin
    CURRENT DEVELOPMENTS IN LENS DESIGN AND OPTICAL ENGINEERING XIII, 2012, 8486
  • [50] Design of mid-wave 1 280×1 024 infrared imaging components (Invited)
    Zhang B.
    Li Z.
    Wu J.
    Ji L.
    Wang W.
    Cai L.
    Shi Y.
    Fa J.
    Hongwai yu Jiguang Gongcheng/Infrared and Laser Engineering, 2021, 50 (04):