• Infrared and Laser Engineering
  • Vol. 45, Issue 9, 935001 (2016)
Tan Xiaodi*
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.3788/irla201645.0935001 Cite this Article
    Tan Xiaodi. Optical data storage technologies for big data era[J]. Infrared and Laser Engineering, 2016, 45(9): 935001 Copy Citation Text show less
    References

    [1] Kumar S, McCaffrey T R. Engineering economics at a hard disk drive manufacturer[J]. Technovation, 2003, 23(2): 749-755.

    [2] Okazaki Y, Hara K, Kawashima T, et al. Estimating the archival life of metal particulate tape[J]. Magnetics IEEE Transactions on, 1992, 28(5): 2365-2367.

    [3] Sony Corporation, Professional Solutions Group. Optical Disc Archive White Paper vI.IO[M]. Japan: Sony Corporation, 2013.

    [4] Ars TECHNICA. Technology Lab/Information Technology[EB/OL]. (2014-01-01) [2016-08-02]. http://arstechnica.com/information-technology.

    [5] Heerden P J. Theory of optical information storage in solids[J]. Appl Opt, 1963, 2: 393-400.

    [6] Coufal H J, Psaltis D, Sincerbox G T. Holographic Data Storage[M]. Heidelberg: Springer-Verlay, 2000.

    [7] Hesselink L, Bashaw M C. Optical memories implemented with photorefractive media[J]. Opt Quantum Electron, 1993, 25: S611-S661.

    [8] Bernal M P, Coufal H, Grygier R K, et al. A precision tester for studies of holographic optical storage materials and recording physics[J]. Appl Opt, 1996, 35: 2360-2374.

    [9] Schnoes M, Ihas B, Dhar L, et al. Photopolymer use for holographic data storage[C]//SPIE, 2003, 4988: 68-76.

    [11] Cao L, He Q, Jin G, et al. Improvement to holographic digital data storage system with partially coherent light[C]//SPIE, 2004, 5557: 377-382.

    [12] Zhai Q, Tao S, Zhang T, et al. Investigation on mechanism of multiple holographic recording with uniform diffraction efficiency in photopolymers[J]. Opt Express, 2009, 17(13): 10871-10880.

    [13] Liu H, Yu D, Li X, et al. Diffusional enhancement of volume gratings as an optimized strategy for holographic memory in PQ-PMMA photopolymer[J]. Opt Express, 2010, 18(7): 6447-6454.

    [14] Yao B, Lei M, Ren L, et al. Polarization multiplexed write-once-read-many optical data storage in bacteriorhodopsin films[J]. Opt Lett, 2005, 30(22): 3060-3063.

    [15] Horimai H, Tan X, Li J. Collinear holography[J]. Appl Opt, 2005, 44: 2575-2579.

    [16] Tanaka K, Hara M, Tokuyama K, et al. High density recording of 270 Gbits/inch2 in a coaxial holographic storage system[C]//Proceedings of ISOM, 2007: Mo-D-03.

    [17] Horimai H, Tan X. High density recording storage system by collinear holography[C]//SPIE, 2006, 6187: 1-7.

    [18] Horimai H, Tan X. Collinear technology for holographic versatile disk[J]. Appl Opt, 2006, 45(5): 910-914.

    [19] Ishioka K, Tanaka K, Kojima N, et al. Optical collinear holographic recording system using a blue laser and a random phase mask[C]//Proceedings of ISOM/ODS Conference, 2005.

    [20] Tan X, Lin X, Wu A, et al. High density collinear holographic data storage system[J]. Front Optoelectron, 2014, 7(4): 443-449.

    [21] Lin X, Ke J, Xiao X, et al. An effective phase modulation in the collinear holographic storage[C]//Proceedings of SPIE Photonics West, 2014, 9006: 900607.

    CLP Journals

    [1] Jian Jialing, Cao Lin, Wei Xiqiao, Guo Jinxin*, Wang Dayong, Zhang Xinping. A review of photopolymers on holography volume data storage[J]. Opto-Electronic Engineering, 2019, 46(3): 1

    Tan Xiaodi. Optical data storage technologies for big data era[J]. Infrared and Laser Engineering, 2016, 45(9): 935001
    Download Citation