Acta Optica Sinica, Volume. 40, Issue 17, 1705001(2020)

Reconstruction Algorithm for Ptychographic Iterative Engine with Highly Tilted Illumination

Chengcheng Chang1,2,3, Xingchen Pan1,2, Hua Tao1,2, Cheng Liu1,2、*, and Jianqiang Zhu1,2
Author Affiliations
  • 1National Laboratory on High Power Laser and Physics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
  • 2National Laboratory on High Power Laser and Physics, China Academy of Engineering Physics, Chinese Academy of Sciences, Shanghai 201800, China
  • 3University of Chinese Academy of Science, Beijing 100049, China
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    Figures & Tables(13)
    Schematic diagram of PIE with highly tilted illumination. (a) Optical path schematic; (b) flowchart of the algorithm
    Diffraction patterns with different incident angles. (a) Diffraction pattern calculated by spherical wave integration based on Huygens-Fresnel principle with large incident angle; (b) diffraction pattern calculated by the revised angular spectrum with the same incident angle; (c) diffraction pattern when the incident angle is 3°; (d) diffraction pattern when the incident angle is 0°
    Simulated initial value. (a) Amplitude of specimen; (b) phase of specimen; (c) amplitude of probe light; (d)phase of probe light
    Representative 9 diffraction patterns of dataset
    Reconstructed results based on general ePIE algorithm with highly tilted illumination after 500 iterations. (a) Amplitude of specimen; (b) phase of specimen; (c) amplitude of probe light; (d) phase of probe light
    Reconstructed results based on revised angular spectrum and ePIE after 500 iterations. (a) Amplitude of specimen; (b) phase of specimen; (c) amplitude of probe light; (d) phase of probe light
    Error curves corresponding to the two calculation methods
    Reconstructed results at the angle errors from -1.5° to 1.5°. (a) Reconstructed amplitude of probe light; (b) spectrum intensity of probe light; (c) amplitude of specimen; (d)error curve with the change of different angle errors
    Part of diffraction patterns recorded by CCD, in which the coordinates represent the position information among the grid of 10×10
    Experimental results based on revised angular spectrum and ePIE with highly tilted illumination. (a) Amplitude of specimen; (b) phase of specimen; (c) amplitude of probe light; (d) phase of probe light
    Experimental results based on general ePIE algorithm with highly tilted illumination. (a) Amplitude of specimen; (b) phase of specimen; (c) amplitude of probe light; (d) phase of probe light
    Experimental error curves corresponding to the two calculation methods
    Experimental results of USAF 1951 test target. (a) Reconstructed results with the proposed algorithm; (b) locally enlarged view of Fig. 13 (a); (c) reconstructed results with the traditional ePIE algorithm; (d) locally enlarged view of Fig. 13 (c)
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    Chengcheng Chang, Xingchen Pan, Hua Tao, Cheng Liu, Jianqiang Zhu. Reconstruction Algorithm for Ptychographic Iterative Engine with Highly Tilted Illumination[J]. Acta Optica Sinica, 2020, 40(17): 1705001

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    Paper Information

    Category: Diffraction and Gratings

    Received: May. 6, 2020

    Accepted: May. 20, 2020

    Published Online: Aug. 26, 2020

    The Author Email: Liu Cheng (chengliu@siom.ac.cn)

    DOI:10.3788/AOS202040.1705001

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