• Infrared and Laser Engineering
  • Vol. 51, Issue 3, 20210944 (2022)
Ziyang Li1、2, Huasong Liu1、2, Peng Sun1、2, Xiao Yang1、2, Jinlin Bai1、2, Ying Xu1、2, Shiqi Yang1、2, Yiqin Ji1、2, and Jianzhong Su1、2
Author Affiliations
  • 1Tianjin Key Laboratory of Optical Thin Film, Tianjin Jinhang Institute of Technical Physics, Tianjin 300308, China
  • 2Wang Zhijiang Laser Innovation Center, Tianjin 300308, China
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    DOI: 10.3788/IRLA20210944 Cite this Article
    Ziyang Li, Huasong Liu, Peng Sun, Xiao Yang, Jinlin Bai, Ying Xu, Shiqi Yang, Yiqin Ji, Jianzhong Su. Design and preparation of laser/long-wave infrared dual-band antireflection thin-film[J]. Infrared and Laser Engineering, 2022, 51(3): 20210944 Copy Citation Text show less

    Abstract

    The design and preparation of multi-band antireflection thin-film on barium fluoride optical elements is the key to improve the detection performance of photoelectric system. 1064 nm laser/long-wave infrared dual-band antireflection thin-film was designed and prepared on barium fluoride substrate. Based on the calculation method of the admittance in periodically symmetric structure thin-film system and the optimization algorithm of fitting periods and reference wavelength, study on the design method of the initial film system of the multi-band antireflection thin-film was carried out. The films were prepared using the thermal evaporation ion-assisted deposition method. The results show that the film has excellent optical properties with a transmittance of 94.0% at 1064 nm, average transmittance of 96.3% in the long-wave infrared spectral band from 8 to 12 μm, and transmittance of 99.4% at 8.2 μm. The laser/long-wave infrared dual-band antireflection thin-film can be applied to dual-mode composite photodetection optoelectronic equipment, which is of great significance to improve the working performance of the photodetection system.
    Ziyang Li, Huasong Liu, Peng Sun, Xiao Yang, Jinlin Bai, Ying Xu, Shiqi Yang, Yiqin Ji, Jianzhong Su. Design and preparation of laser/long-wave infrared dual-band antireflection thin-film[J]. Infrared and Laser Engineering, 2022, 51(3): 20210944
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