• Acta Photonica Sinica
  • Vol. 51, Issue 11, 1109001 (2022)
Binjun MENG1, Bingcai LIU2, Dong YANG3, Hongjun WANG2, Xueliang ZHU1、2, Xiaotong QIAN2, Rui Niu2, and Ailing TIAN1、2、*
Author Affiliations
  • 1School of Ordnance Science and Technology,Xi'an Technological University,Xi'an 710021,China
  • 2Shaanxi Province Key Laboratory of Membrane Technology and Optical Test,Xi'an 710021,China
  • 3CCIC West Testing Company Limited,Xi'an 710032,China
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    DOI: 10.3788/gzxb20225111.1109001 Cite this Article
    Binjun MENG, Bingcai LIU, Dong YANG, Hongjun WANG, Xueliang ZHU, Xiaotong QIAN, Rui Niu, Ailing TIAN. Off-axis Compression Holographic Phase Reconstruction Based on Frequency Domain Sparse Sampling[J]. Acta Photonica Sinica, 2022, 51(11): 1109001 Copy Citation Text show less
    Digital holographic micro measurement device diagram
    Fig. 1. Digital holographic micro measurement device diagram
    Digital hologram collected by experiment
    Fig. 2. Digital hologram collected by experiment
    Traditional back propagation method and phase reconstruction steps based on compressed sensing sparse sampling
    Fig. 3. Traditional back propagation method and phase reconstruction steps based on compressed sensing sparse sampling
    Experimental results of 3D reconstruction of micro lens array
    Fig. 4. Experimental results of 3D reconstruction of micro lens array
    Experimental results of 3D reconstruction of phase resolution plate.
    Fig. 5. Experimental results of 3D reconstruction of phase resolution plate.
    ResidualPV/μmRMS
    R-BP0.697 50.127 0
    R-BP-CS0.509 40.107 9
    Table 1. Comparative analysis of residual
    Binjun MENG, Bingcai LIU, Dong YANG, Hongjun WANG, Xueliang ZHU, Xiaotong QIAN, Rui Niu, Ailing TIAN. Off-axis Compression Holographic Phase Reconstruction Based on Frequency Domain Sparse Sampling[J]. Acta Photonica Sinica, 2022, 51(11): 1109001
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