Frontiers of Optoelectronics, Volume. 14, Issue 4, 529(2021)

Improved phase retrieval in holographic data storage based on a designed iterative embedded data

Changyu YU1, Suping WANG1, Ruixian CHEN1, Jianying HAO1, Qijing ZHENG1, Jinyu WANG1, Xianying QIU1, Kun WANG1,2, Dakui LIN1, Yi YANG1, Hui LI1,3, Xiao LIN1,4、*, and Xiaodi TAN1
Author Affiliations
  • 1Information Photonics Research Center, College of Photonic and Electronic Engineering, Fujian Normal University, Fuzhou 350117, China
  • 2Fujian Provincial Key Laboratory of Photonics Technology, Fuzhou 350117, China
  • 3Key Laboratory of OptoElectronic Science and Technology for Medicine of Ministry of Education, Fuzhou 350117, China
  • 4Wuhan National Laboratory for Optoelectronics, Wuhan 430074, China
  • show less
    References(20)

    [1] [1] Reinsel D, Gantz J, Rydning J. The Digitization of theWorld––From Edge to Core. IDC & Seagate: IDC White Paper, 2018

    [2] [2] Haw M. Holographic data storage: the light fantastic. Nature, 2003, 422(6932): 556–558

    [3] [3] Van Heerden P J. Theory of optical information storage in solids. Applied Optics, 1963, 2(4): 393–400

    [4] [4] Horimai H, Tan X, Li J. Collinear holography. Applied Optics, 2005, 44(13): 2575–2579

    [5] [5] Lin X, Hao J, Zheng M, Dai T, Li H, Ren Y. Optical holographic data storage––the time for new development. Opto-Electronic Engineering, 2019, 46(3): 180642

    [6] [6] Lin X, Liu J, Hao J, Wang K, Zhang Y, Li H, Horimai H, Tan X. Collinear holographic data storage technologies. Opto-Electronic Advances, 2020, 3(3): 19000401

    [7] [7] John R, Joseph J, Singh K. Holographic digital data storage using phase-modulated pixels. Optics and Lasers in Engineering, 2005, 43 (2): 183–194

    [8] [8] Psaltis D, Levene M, Pu A, Barbastathis G, Curtis K. Holographic storage using shift multiplexing. Optics Letters, 1995, 20(7): 782– 784

    [9] [9] e M, Cao L, Tan Q, He Q, Jin G. Novel phase detection method for a holographic data storage system using two interferograms. Journal of Optics. A, Pure and Applied Optics, 2009, 11(6): 065705

    [10] [10] Jeon S H, Gil S K. 2-step phase-shifting digital holographic optical encryption and error analysis. Journal of the Optical Society of Korea, 2011, 15(3): 244–251

    [11] [11] Xu X F, Cai L Z, Wang Y R, Meng X F, Zhang H, Dong G Y, Shen X X. Blind phase shift extraction and wavefront retrieval by twoframe phase-shifting interferometry with an unknown phase shift. Optics Communications, 2007, 273(1): 54–59

    [12] [12] Lin X, Huang Y, Shimura T, Fujimura R, Tanaka Y, Endo M, Nishimoto H, Liu J, Li Y, Liu Y, Tan X. Fast non-interferometric iterative phase retrieval for holographic data storage. Optics Express, 2017, 25(25): 30905–30915

    [13] [13] Pan X, Liu C, Lin Q, Zhu J. Ptycholographic iterative engine with self-positioned scanning illumination. Optics Express, 2013, 21(5): 6162–6168

    [14] [14] Gureyev T E, Roberts A, Nugent K A. Phase retrieval with the transport-of-intensity equation: matrix solution with use of Zernike polynomials. Journal of the Optical Society of America. A, Optics, Image Science, and Vision, 1995, 12(9): 1932–1942

    [15] [15] Gureyev T E, Nugent K A. Rapid quantitative phase imaging using the transport of intensity equation. Optics Communications, 1997, 133(1–6): 339–346

    [16] [16] Volkov V V, Zhu Y, De Graef M. A new symmetrized solution for phase retrieval using the transport of intensity equation. Micron (Oxford, England), 2002, 33(5): 411–416

    [17] [17] Fienup J R. Phase retrieval algorithms: a comparison. Applied Optics, 1982, 21(15): 2758–2769

    [18] [18] Fienup J R. Reconstruction of a complex-valued object from the modulus of its Fourier transform using a support constraint. Journal of the Optical Society of America. A, Optics and Image Science, 1987, 4(1): 118–123

    [19] [19] Lin X, Huang Y, Li Y Y, Liu J, Liu J, Kang R, Tan X. Four-level phase pair encoding and decoding with single interferometric phase retrieval for holographic data storage. Chinese Optics Letters, 2018, 16(3): 032101

    [20] [20] Liu J, Zhang L,Wu A, Tanaka Y, Shigaki M, Shimura T, Lin X, Tan X. High noise margin decoding of holographic data page based on compressed sensing. Optics Express, 2020, 28(5): 7139–7151.

    Tools

    Get Citation

    Copy Citation Text

    Changyu YU, Suping WANG, Ruixian CHEN, Jianying HAO, Qijing ZHENG, Jinyu WANG, Xianying QIU, Kun WANG, Dakui LIN, Yi YANG, Hui LI, Xiao LIN, Xiaodi TAN. Improved phase retrieval in holographic data storage based on a designed iterative embedded data[J]. Frontiers of Optoelectronics, 2021, 14(4): 529

    Download Citation

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

    Category: RESEARCH ARTICLE

    Received: Mar. 10, 2021

    Accepted: May. 17, 2021

    Published Online: Jan. 10, 2022

    The Author Email: LIN Xiao (xiaolin@fjnu.edu.cn)

    DOI:10.1007/s12200-021-1218-0

    Topics