• Acta Optica Sinica
  • Vol. 42, Issue 9, 0930001 (2022)
Jinguang Lü1、**, Jingqiu Liang1、*, Weibiao Wang1, Yuxin Qin1、2, and Jin Tao1
Author Affiliations
  • 1State Key Laboratory of Applied Optics, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, Jilin, China
  • 2University of Chinese Academy of Sciences, Beijing 100049, China
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    DOI: 10.3788/AOS202242.0930001 Cite this Article Set citation alerts
    Jinguang Lü, Jingqiu Liang, Weibiao Wang, Yuxin Qin, Jin Tao. Characteristics of Step Surface Shape Error in Snapshot Interference Imaging Spectrometer[J]. Acta Optica Sinica, 2022, 42(9): 0930001 Copy Citation Text show less
    Schematic diagram of snapshot interference imaging spectrometer
    Fig. 1. Schematic diagram of snapshot interference imaging spectrometer
    Sketch map of step surface shape error of multi micro mirror unit. (a) Concave deformation of step element; (b) convex deformation of step element
    Fig. 2. Sketch map of step surface shape error of multi micro mirror unit. (a) Concave deformation of step element; (b) convex deformation of step element
    Intensity of interference image point array corresponding to different step surface shape error. (a) No surface shape error; (b) low order distribution; (c) high order distribution; (d) simultaneous distribution of low order and high order
    Fig. 3. Intensity of interference image point array corresponding to different step surface shape error. (a) No surface shape error; (b) low order distribution; (c) high order distribution; (d) simultaneous distribution of low order and high order
    Recovered spectra corresponding to different step surface shape error distributions. (a) No surface shape error; (b) low order distribution; (c) high order distribution; (d) simultaneous distribution of low order and high order
    Fig. 4. Recovered spectra corresponding to different step surface shape error distributions. (a) No surface shape error; (b) low order distribution; (c) high order distribution; (d) simultaneous distribution of low order and high order
    Phase error corresponding to different step surface shape error varying with optical path difference. (a) No surface shape error; (b) low order distribution; (c) high order distribution; (d) simultaneous distribution of low order and high order
    Fig. 5. Phase error corresponding to different step surface shape error varying with optical path difference. (a) No surface shape error; (b) low order distribution; (c) high order distribution; (d) simultaneous distribution of low order and high order
    Strehl ratio modulation curves of coherent image points from two ways
    Fig. 6. Strehl ratio modulation curves of coherent image points from two ways
    Corresponding relationship between spatial position and imaging field of view on multi micro mirrors
    Fig. 7. Corresponding relationship between spatial position and imaging field of view on multi micro mirrors
    Phase error corresponding to different step surface error distribution varying with field of view and azimuth angle. (a) Low order distribution; (b) high order distribution; (c) simultaneous distribution of low order and high order
    Fig. 8. Phase error corresponding to different step surface error distribution varying with field of view and azimuth angle. (a) Low order distribution; (b) high order distribution; (c) simultaneous distribution of low order and high order
    Relationship between reconstructed spectrum error and step sagittal height of two multi micro mirrors
    Fig. 9. Relationship between reconstructed spectrum error and step sagittal height of two multi micro mirrors
    Jinguang Lü, Jingqiu Liang, Weibiao Wang, Yuxin Qin, Jin Tao. Characteristics of Step Surface Shape Error in Snapshot Interference Imaging Spectrometer[J]. Acta Optica Sinica, 2022, 42(9): 0930001
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