Laser & Optoelectronics Progress, Volume. 61, Issue 5, 0504002(2024)

Reconstructive Optical Spectrometer Using Perovskite Filter Arrays

Qichuan Tan, Peng Zeng*, and Zheqi Yang
Author Affiliations
  • School of Materials and Energy, University of Electronic Science and Technology of China, Chengdu 611731, Sichuan , China
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    Figures & Tables(10)
    Illustration of the working principle of the filter-array-based reconstructive optical spectrometer. (a) Schematic diagram of the filter-array-based reconstructive optical spectrometer; (b) illustration of the working principle of the filter array; (c) schematic diagram of the discretized spectra
    Absorbance and transmissivity characteristics of the filter array (the numbers of the curves correspond to those of perovskites in Table 1). (a) Absorbance of the filter array; (b) transmissivity of the filter array
    Illustration of the spectormeter and camera characteristics. (a) Quantum efficiency of the CMOS camera; (b) photo of the reconstructive optical spectrometer
    Comparison of the XRD between the Cs0.1MA0.9PbBr1.5I1.5 obtained by N2-assisted crystallization method and MAPbBr1.5I1.5 obtained by chlorobenzene anti-solvent method
    SEM of Cs0.1MA0.9PbBr1.5I1.5 film obtained by different methods. (a) Chlorobenzene anti-solvent method; (b) N2-assisted crystallization method
    Comparison of time course photoluminescence spectra of different films. (a) Time course photoluminescence spectrum of MAPbBr1.5I1.5; (b) time course photoluminescence spectrum of Cs0.1MA0.9PbBr1.5I1.5+2PACz
    Schematic diagram of the optics for spectrometer tests using a Xe lamp with a monochromator
    Reconstruction of the monochromatic spectrum. (a) Comparison between the original and reconstructed spectrum of the monochromatic light with a center wavelength of 500 nm; (b) comparison between the original and reconstructed spectrum of the monochromatic light with a center wavelength of 600 nm
    Comparison between the original and reconstructed spectrum of the broad-band white light from a flashlamp
    • Table 1. Value of x and y in Cs0.1MA0.9Pb(ClxBryI1-xy)3

      View table

      Table 1. Value of x and y in Cs0.1MA0.9Pb(ClxBryI1-xy)3

      No.xyNo.xyNo.xyNo.xy
      10.000.00160.000.38310.000.75460.210.79
      20.000.03170.000.40320.000.78470.260.74
      30.000.05180.000.43330.000.80480.300.70
      40.000.08190.000.45340.000.83490.340.66
      50.000.10200.000.48350.000.85500.390.61
      60.000.13210.000.50360.000.88510.430.57
      70.000.15220.000.53370.000.90520.470.53
      80.000.18230.000.55380.000.93530.510.49
      90.000.20240.000.58390.000.95540.560.44
      100.000.23250.000.60400.000.98550.600.40
      110.000.25260.000.63410.001.00560.640.36
      120.000.28270.000.65420.040.96570.690.31
      130.000.30280.000.68430.090.91580.730.27
      140.000.33290.000.70440.130.87590.770.23
      150.000.35300.000.73450.170.83600.810.19
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    Qichuan Tan, Peng Zeng, Zheqi Yang. Reconstructive Optical Spectrometer Using Perovskite Filter Arrays[J]. Laser & Optoelectronics Progress, 2024, 61(5): 0504002

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    Paper Information

    Category: Detectors

    Received: Mar. 9, 2023

    Accepted: Apr. 20, 2023

    Published Online: Feb. 27, 2024

    The Author Email: Peng Zeng (peng.zeng@uestc.edu.cn)

    DOI:10.3788/LOP230822

    CSTR:32186.14.LOP230822

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