• Electronics Optics & Control
  • Vol. 32, Issue 1, 80 (2025)
LIU Zilong, FU Yuegang, HU Yuan, ZHOU Xinyu, and GUAN Yucong
Author Affiliations
  • School of Optoelectronic Engineering, Changchun University of Science and Technology, Changchun 130000, China
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    DOI: 10.3969/j.issn.1671-637x.2025.01.013 Cite this Article
    LIU Zilong, FU Yuegang, HU Yuan, ZHOU Xinyu, GUAN Yucong. Optimization of DLDOEs with High Diffraction Efficiency Under Oblique Incidence[J]. Electronics Optics & Control, 2025, 32(1): 80 Copy Citation Text show less

    Abstract

    The diffraction efficiency under oblique incidence is low in traditional optimization methods for Double-Layer Diffraction Optical Elements(DLDOEs).Based on the model of theoretical relationships of diffraction efficiency with incident angles and wavelengths for DLDOE, an angle-optimized design method is proposed. By analyzing the influence of different incident angles and micro-structure heights on diffraction efficiency in the designing process, optimal micro-structure heights are selected, which significantly enhance the diffraction efficiency at large field-of-view.In order to validate the above theory, the proposed angle-optimized designing method is applied alongside the method of equal diffraction efficiency under long and short wavelengths, and the bandwidth-integrated average diffraction efficiency maximization method, and the DLDOE in both the visible light and infrared spectrum are designed.The results demonstrate that the angle-optimized design method can effectively increase the angular bandwidth-integrated average diffraction efficiency of DLDOE, thereby enhancing the imaging quality of optical systems.Finally, based on the angle-optimized designing method, a long-focus hybrid refraction-diffraction system is designed, which achieves high image quality with high diffraction efficiency.
    LIU Zilong, FU Yuegang, HU Yuan, ZHOU Xinyu, GUAN Yucong. Optimization of DLDOEs with High Diffraction Efficiency Under Oblique Incidence[J]. Electronics Optics & Control, 2025, 32(1): 80
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