• Spectroscopy and Spectral Analysis
  • Vol. 42, Issue 10, 2995 (2022)
Dong-dong SHI*, Zhao-bin CAO, Yan-hua HUAN, Yan-chun GONG, Wen-yuan WU, and Jun YANG*;
Author Affiliations
  • Department of General Education, Army Engineering University of PLA, Nanjing 211101, China
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    DOI: 10.3964/j.issn.1000-0593(2022)10-2995-05 Cite this Article
    Dong-dong SHI, Zhao-bin CAO, Yan-hua HUAN, Yan-chun GONG, Wen-yuan WU, Jun YANG. Reflection Polarization Spectral Characteristics of High Performance Coating Material La2Zr2O7[J]. Spectroscopy and Spectral Analysis, 2022, 42(10): 2995 Copy Citation Text show less
    Characterization of La2Zr2O7(a): X-ray diffraction (XRD); (b): Raman spectra; (c): Micro morphology of Scanning Electron Microscope (SEM)
    Fig. 1. Characterization of La2Zr2O7
    (a): X-ray diffraction (XRD); (b): Raman spectra; (c): Micro morphology of Scanning Electron Microscope (SEM)
    The schematic diagram of optical test experimental platformθi is zenith angle and Φi is azimuth angle of incidence direction, θr is zenith angle and Φr is azimuth angle of reflection direction, dLr is radiance along the direction of reflection and dEi is irradiance along the direction of incidence
    Fig. 2. The schematic diagram of optical test experimental platform
    θi is zenith angle and Φi is azimuth angle of incidence direction, θr is zenith angle and Φr is azimuth angle of reflection direction, dLr is radiance along the direction of reflection and dEi is irradiance along the direction of incidence
    Reflected light polarization characteristics of bulk La2Zr2O7 with natural light incident(a): The dependence of DOLP on incident wavelength; (b): The dependence of maximum value λ0 of DOLP on detection angle θr; (c): The dependence of maximum value of DOLPmax on detection angle θr
    Fig. 3. Reflected light polarization characteristics of bulk La2Zr2O7 with natural light incident
    (a): The dependence of DOLP on incident wavelength; (b): The dependence of maximum value λ0 of DOLP on detection angle θr; (c): The dependence of maximum value of DOLPmax on detection angle θr
    Reflected light polarization characteristics of powder La2Zr2O7 with natural light incident(a): The dependence of DOLP on incident wavelength; (b): The dependence of maximum value λ0 of DOLP on detection angle θr; (c): The dependence of maximum value DOLPmax on detection angle θr
    Fig. 4. Reflected light polarization characteristics of powder La2Zr2O7 with natural light incident
    (a): The dependence of DOLP on incident wavelength; (b): The dependence of maximum value λ0 of DOLP on detection angle θr; (c): The dependence of maximum value DOLPmax on detection angle θr
    Reflected light polarization characteristics of bulk La2Zr2O7 with polarized light incident(a): The dependence of DOLP on incident wavelength; (b): The dependence of maximum value λ0 of DOLP on detection angle θr; (c): The dependence of maximum value DOLPmax on detection angle θr
    Fig. 5. Reflected light polarization characteristics of bulk La2Zr2O7 with polarized light incident
    (a): The dependence of DOLP on incident wavelength; (b): The dependence of maximum value λ0 of DOLP on detection angle θr; (c): The dependence of maximum value DOLPmax on detection angle θr
    Reflected light polarization characteristics of powder La2Zr2O7 with polarized light incident(a): The dependence of DOLP on incident wavelength; (b): The dependence of maximum value λ0 of DOLP on detection angle θr; (c): The dependence of maximum value DOLPmax on detection angle θr
    Fig. 6. Reflected light polarization characteristics of powder La2Zr2O7 with polarized light incident
    (a): The dependence of DOLP on incident wavelength; (b): The dependence of maximum value λ0 of DOLP on detection angle θr; (c): The dependence of maximum value DOLPmax on detection angle θr
    Dong-dong SHI, Zhao-bin CAO, Yan-hua HUAN, Yan-chun GONG, Wen-yuan WU, Jun YANG. Reflection Polarization Spectral Characteristics of High Performance Coating Material La2Zr2O7[J]. Spectroscopy and Spectral Analysis, 2022, 42(10): 2995
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