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Volume 38 Issue 4
May  2014
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Characteristic analysis of encryption and decryption in random polarization optical encryption algorithm

  • Corresponding author: SHEN Xueju, sxjpaper@163.com
  • Received Date: 2013-07-29
    Accepted Date: 2013-10-30
  • To demonstrate the function of random polarization mask in an optical encryption system, the influence of parameters in random polarization mask on encryption effect and decryption error in double random polarization optical encoding system was analyzed by means of theoretical analysis and numerical simulation. The different effects of random phase encoding algorithm and random polarization encoding algorithm on encryption effect and decryption error were compared and presented. The results indicate that a satisfying white-noise liked encrypted image can be obtained when using random phase mask or random polarization mask. But a larger key space is observed with random polarization mask due to its two structured parameters. From decryption point of view, the key sensitivities are different among the different parameters in random polarization mask or random phase mask. The random polarization encoding algorithm has the favorable feasibility for practical application. The results are significant not only for the understanding on the intrinsic of random phase and polarization optical encoding system but also for the design of optical encryption system with high security level.
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  • [1]

    REFREGIER P, JAVIDI B. Optical-image encryption based on input plane and Fourier plane random encoding [J]. Optics Letters, 1995, 20(7): 767-769.
    [2]

    LIN Ch, SHEN X J, YANG Sh X. Simulation analysis of implementing random phase mask with spatial light modulator [J]. Laser Technology, 2013, 37(3): 365-370(in Chinese).
    [3]

    JAVIDI B, HOMER J L. Optical pattern recognition for validation and security verification [J]. Optical Engineering, 1994, 33(6): 1752-1756.
    [4]

    ZHANG J J,SITU G H,ZHANG Y. Progress of optical security systems based on random-phase encoding technology [J]. Journal of the Graduate School of the Chinese Academy of Sciences, 2003, 20(3): 265-272 (in Chinese).
    [5]

    STEPHEN P, GAJDA R, SZNPLIK T. Distributed kinoforms in optical security applications [J]. Optical Engineering, 1996, 35(9): 2453-2458.
    [6]

    JAVIDI B, SERGENT A. Fully phase encoded key and biometrics for security verification [J]. Optical Engineering, 1997, 36(3): 935-942.
    [7]

    LIN Ch, SHEN X J, LI Z Y. Cryptographic analysis on the key space of optical phase encryption algorithm based on the design of discrete random phase mask [J]. Optics and Laser Technology, 2013, 49: 108-117.
    [8]

    CHENG Ch J, CHEN M L. Polarization encoding for optical encryption using twisted nematic liquid crystal spatial light modulators[J]. Optics Communications, 2004, 237(1): 45-52.
    [9]

    UNNIKRISHNAN G, NAUGHTON T, SHERIDAN J. Polarization encoding and multiplexing of two-dimensional signals: application to image encryption[J]. Applied Optics, 2006, 45(22): 5693-5700.
    [10]

    MATOBA O, JAVIDI B. Secure holographic memory by double-random polarization encryption[J].Applied Optics, 2004, 43(14): 2915-2919.
    [11]

    ERIKSEN R, MOGENSEN P, GLUKSTAD J. Elliptical polarisation encoding in two dimensions using phase-only spatial light modulators[J]. Optics Communications, 2001, 187(1): 325-336.
    [12]

    BARRERA J, MIRA A, TORROBA R. Optical encryption and QR codes: secure and noise-free information retrieval[J]. Optics Express, 2013, 21(5): 5373-5378.
    [13]

    XIAO Y L, LIU Q, YUAN Sh, et al. Study about decryption based on optical image encryption system in the Fresnel domain [J]. Laser Technology, 2009, 33(4): 433-436 (in Chinese).
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Characteristic analysis of encryption and decryption in random polarization optical encryption algorithm

    Corresponding author: SHEN Xueju, sxjpaper@163.com
  • 1. Ordnance Engineering College, Shijiazhuang 050003, China;
  • 2. Unit 78336, Chinese People's Liberation Army, Kunming 650211, China

Abstract: To demonstrate the function of random polarization mask in an optical encryption system, the influence of parameters in random polarization mask on encryption effect and decryption error in double random polarization optical encoding system was analyzed by means of theoretical analysis and numerical simulation. The different effects of random phase encoding algorithm and random polarization encoding algorithm on encryption effect and decryption error were compared and presented. The results indicate that a satisfying white-noise liked encrypted image can be obtained when using random phase mask or random polarization mask. But a larger key space is observed with random polarization mask due to its two structured parameters. From decryption point of view, the key sensitivities are different among the different parameters in random polarization mask or random phase mask. The random polarization encoding algorithm has the favorable feasibility for practical application. The results are significant not only for the understanding on the intrinsic of random phase and polarization optical encoding system but also for the design of optical encryption system with high security level.

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