• Chinese Journal of Lasers
  • Vol. 47, Issue 3, 301005 (2020)
Zhang Chong1、2, Hu Jingpei1、2, Zhou Ruyi1、2, Liu Tiecheng1、2, Sergey Avakaw3, Zeng Aijun1、2, and Huang Huijie1、2
Author Affiliations
  • 1Laboratory of Information Optics and Optoelectronic Technology, Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences, Shanghai 201800, China
  • 2College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences, Beijing 100049, China
  • 3Company of KBTEM-OMO Republication Unitary Scientific and Production Enterprise, Minsk 220033, Belarus
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    DOI: 10.3788/CJL202047.0301005 Cite this Article Set citation alerts
    Zhang Chong, Hu Jingpei, Zhou Ruyi, Liu Tiecheng, Sergey Avakaw, Zeng Aijun, Huang Huijie. Design and Analysis of Inverse Polarization Grating Devices for Deep Ultraviolet Light[J]. Chinese Journal of Lasers, 2020, 47(3): 301005 Copy Citation Text show less

    Abstract

    To realize the application of a metal grating polarizer in a polarization illumination system for photolithography, a dielectric-metal grating polarizer based on the inverse polarization effect of a resonant-domain grating is proposed. The grating comprises aluminum (Al), magnesium fluoride (MgF2), and a silicon dioxide (SiO2) substrate. In comparison with general sub-wavelength metallic gratings, the period of the proposed polarizer is close to the wavelength of the incident light (0.19--0.20 μm), and it exhibits the inverse polarization effect of transmitting transverse electric (TE) polarized light and reflecting transverse magnetic (TM) polarized light. Finite difference time domain (FDTD) simulation results indicate that the transmittance of TE-polarized light exceeds 60% and the polarization extinction ratio is greater than 180 when light having a wavelength of 0.193 μm is incident normally. In comparison with a single-layer metal grating polarizer constructed using the same materials and structural parameters, the proposed dielectric-metal grating polarizer exhibits better polarization performance in the deep ultraviolet band, with the transmittance and extinction ratio approximately increased by 10% and 4.5 times at wavelength of 0.193 μm, respectively.
    Zhang Chong, Hu Jingpei, Zhou Ruyi, Liu Tiecheng, Sergey Avakaw, Zeng Aijun, Huang Huijie. Design and Analysis of Inverse Polarization Grating Devices for Deep Ultraviolet Light[J]. Chinese Journal of Lasers, 2020, 47(3): 301005
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