Chinese Journal of Lasers, Volume. 48, Issue 24, 2409001(2021)

Improved Phase Compensation Method Based on Phase Vibration Minimization

Zhao Dong1,2,3, Wenjian Wang1, Huaying Wang1,2,3, Zijian Zhang1, Jieyu Wang1, Jialiang Lei1, and Xiaolei Zhang1、*
Author Affiliations
  • 1School of Mathematics and Physics Science and Engineering, Hebei University of Engineering, Handan, Hebei 056038, China
  • 2Hebei Computational Optical Imaging and Photoelectric Detection Technology Innovation Center, Handan, Hebei 056038, China
  • 3Hebei International Joint Research Center for Computational Optical Imaging and Intelligent Sensing, Handan, Hebei 056038, China
  • show less
    References(25)

    [1] Cuche E, Bevilacqua F, Depeursinge C. Digital holography for quantitative phase-contrast imaging[J]. Optics Letters, 24, 291-293(1999).

    [2] Dai S Q, Dou J Z, Zhang J W et al. Digital holography based near-field imaging and its application[J]. Acta Optica Sinica, 40, 0111008(2020).

    [3] Wen K, Ma Y, Zhang M L et al. Quantitative phase microscopy with high stability[J]. Laser & Optoelectronics Progress, 57, 200001(2020).

    [4] Psota P, Mokrý P, Lédl V et al. Image plane digital holographic microscope for the inspection of ferroelectric single crystals[J]. Optical Engineering, 55, 121731(2016).

    [5] Feng F, Tian A L, Liu B C et al. Full-field three-dimensional test for scratch defects using digital holographic scanning imaging system[J]. Chinese Journal of Lasers, 47, 0409003(2020).

    [6] Mann C, Yu L, Lo C M et al. High-resolution quantitative phase-contrast microscopy by digital holography[J]. Optics Express, 13, 8693-8698(2005).

    [7] Deng D, Peng J, Qu W et al. Simple and flexible phase compensation for digital holographic microscopy with electrically tunable lens[J]. Applied Optics, 56, 6007-6014(2017).

    [8] Ebrahimi S, Dashtdar M, Sánchez-Ortiga E et al. Stable and simple quantitative phase-contrast imaging by Fresnel biprism[J]. Applied Physics Letters, 112, 113701(2018).

    [10] Ferraro P, de Nicola S, Finizio A et al. Compensation of the inherent wave front curvature in digital holographic coherent microscopy for quantitative phase-contrast imaging[J]. Applied Optics, 42, 1938-1946(2003).

    [11] Colomb T, Cuche E, Charrière F et al. Automatic procedure for aberration compensation in digital holographic microscopy and applications to specimen shape compensation[J]. Applied Optics, 45, 851-863(2006).

    [12] Di J L, Zhao J L, Sun W W et al. Phase aberration compensation of digital holographic microscopy based on least squares surface fitting[J]. Optics Communications, 282, 3873-3877(2009).

    [13] Gao C, Wen Y F, Cheng H B et al. Automatic phase-distortion compensation algorithm in digital holography[J]. Acta Optica Sinica, 38, 1209001(2018).

    [14] Nguyen T, Bui V, Lam V et al. Automatic phase aberration compensation for digital holographic microscopy based on deep learning background detection[J]. Optics Express, 25, 15043-15057(2017).

    [15] Sun J, Chen Q, Zhang Y et al. Optimal principal component analysis-based numerical phase aberration compensation method for digital holography[J]. Optics Letters, 41, 1293-1296(2016).

    [16] Zhang X Y, Sun J S, Zhang Z X et al. Multi-step phase aberration compensation method based on optimal principal component analysis and subsampling for digital holographic microscopy[J]. Applied Optics, 58, 389-397(2019).

    [17] He W L, Liu Z J, Yang Z M et al. Robust phase aberration compensation in digital holographic microscopy by self-extension of holograms[J]. Optics Communications, 445, 69-75(2019).

    [18] Trujillo C, Castañeda R, Piedrahita-Quintero P et al. Automatic full compensation of quantitative phase imaging in off-axis digital holographic microscopy[J]. Applied Optics, 55, 10299-10306(2016).

    [19] Wang H Y, Dong Z, Wang X et al. Phase compensation in digital holographic microscopy using a quantitative evaluation metric[J]. Optics Communications, 430, 262-267(2019).

    [20] Liu S, Lian Q, Qing Y et al. Automatic phase aberration compensation for digital holographic microscopy based on phase variation minimization[J]. Optics Letters, 43, 1870-1873(2018).

    [22] Gonzalez R C, Woods R E. Digital imaging processing[M]. 3rd ed(2017).

    [23] Wang Z, Bovik A C, Sheikh H R et al. Image quality assessment: from error visibility to structural similarity[J]. IEEE Transactions on Image Processing, 13, 600-612(2004).

    [24] Lü N G. Fourier optics[M]. 2nd ed, 57-62(2006).

    [25] Liu S, Lian Q S, Xu Z P. Phase aberration compensation for digital holographic microscopy based on double fitting and background segmentation[J]. Optics and Lasers in Engineering, 115, 238-242(2019).

    [26] Liu S, Zhu W Z, Xu Z P et al. Automatic and robust phase aberration compensation for digital holographic microscopy based on minimizing total standard deviation[J]. Optics and Lasers in Engineering, 134, 106276(2020).

    Tools

    Get Citation

    Copy Citation Text

    Zhao Dong, Wenjian Wang, Huaying Wang, Zijian Zhang, Jieyu Wang, Jialiang Lei, Xiaolei Zhang. Improved Phase Compensation Method Based on Phase Vibration Minimization[J]. Chinese Journal of Lasers, 2021, 48(24): 2409001

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: holography and information processing

    Received: Apr. 23, 2021

    Accepted: May. 24, 2021

    Published Online: Nov. 22, 2021

    The Author Email: Zhang Xiaolei (xiaolei6778@hebeu.edu.cn)

    DOI:10.3788/CJL202148.2409001

    Topics