• Laser & Optoelectronics Progress
  • Vol. 59, Issue 10, 1022001 (2022)
Zhengping Zhou*, Heng Chen, Hui Ji, Xiaqing Li, and Jun Liao
Author Affiliations
  • Jiangsu Shuguang Optoelectronics Limited Company, Yangzhou 225000, Jiangsu , China
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    DOI: 10.3788/LOP202259.1022001 Cite this Article Set citation alerts
    Zhengping Zhou, Heng Chen, Hui Ji, Xiaqing Li, Jun Liao. Design of Lightweight Long-Wave Infrared Athermalized Optical System with Hybrid Refractive-Diffractive[J]. Laser & Optoelectronics Progress, 2022, 59(10): 1022001 Copy Citation Text show less

    Abstract

    As per the requirements of high imaging quality, large relative aperture, lightweight, and wide temperature adaptability of the non-cooling thermal imaging system, based on the structural analysis of the lightweight optical system, the initial power distribution of the system is solved using the principle of optical-passive compensation. Moreover, a lightweight long-wave infrared athermalization optical system is designed using the characteristics of binary diffraction surface different from infrared materials. The focal length of the designed system is 50 mm, and the F-number is 1. It is suitable for a long-wave (8‒12 μm) infrared uncooled detector with a resolution of 640×512 and pixel size of 12 µm. The optical system comprises three lenses having a total mass of 67 g. In the temperature range of -40 °C‒60 °C, the modulation transfer function of each field of view is close to the diffraction limit. The experimental results of room temperature demonstrate that the designed system has a good athermalization effect.
    Vd=λMλS-λL
    Td=1n0dn0dt-2αG
    φ=h1φ1+h2φ2+h3φ3
    lf=h3/u3'
    Δξ=-1u3'2(h12T1φ1+h22T2φ2+h32T3φ3+u1'2αMd1+u2'2αMd2)
    u1'2d1=h1(h1-h2)φ1
    u2'2d2=h2(h2-h3)φ2
    Δη=αMlf
    Δs=Δξ-Δη=0
    h12φ1V1+h22φ2V2+h32φ3V3=0
    Φ(r)=2πλM(C1r2+C2r4+C3r6+)
    d=mλMnM-1
    N×2π=Φ(r)
    Zhengping Zhou, Heng Chen, Hui Ji, Xiaqing Li, Jun Liao. Design of Lightweight Long-Wave Infrared Athermalized Optical System with Hybrid Refractive-Diffractive[J]. Laser & Optoelectronics Progress, 2022, 59(10): 1022001
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