• Frontiers of Optoelectronics
  • Vol. 9, Issue 3, 508 (2016)
Junxiang KE, Lilin YI*, Tongtong HOU, and Weisheng HU
Author Affiliations
  • The State Key Lab of Advanced Optical Communication Systems and Networks, Department of Electronic Engineering,Shanghai Jiao Tong University, Shanghai 200240, China
  • show less
    DOI: 10.1007/s12200-016-0570-y Cite this Article
    Junxiang KE, Lilin YI, Tongtong HOU, Weisheng HU. Key technologies in chaotic optical communications[J]. Frontiers of Optoelectronics, 2016, 9(3): 508 Copy Citation Text show less
    References

    [1] Maiman T H. Optical and microwave-optical experiments in ruby. Physical Review Letters, 1960, 4(11): 564–566

    [2] Lorenz E N. Deterministic nonperiodic flow. Journal of the Atmospheric Sciences, 1963, 20(2): 130–141

    [3] Haken H. Analogy between higher instabilities in fluids and lasers. Physics Letters A, 1975, 53(1): 77–78

    [4] Pecora L M, Carroll T L. Synchronization in chaotic systems. Physical Review Letters, 1990, 64(8): 821–824

    [5] Argyris A, Syvridis D, Larger L, Annovazzi-Lodi V, Colet P, Fischer I, García-Ojalvo J, Mirasso C R, Pesquera L, Shore K A. Chaos-based communications at high bit rates using commercial fibre-optic links. Nature, 2005, 438(7066): 343–346

    [6] Lavrov R, Jacquot M, Larger L. Nonlocal nonlinear electro-optic phase dynamics demonstrating 10 Gb/s chaos communications. IEEE Journal of Quantum Electronics, 2010, 46(10): 1430–1435

    [7] Masoller C. Anticipation in the synchronization of chaotic semiconductor lasers with optical feedback. Physical Review Letters, 2001, 86(13): 2782–2785

    [8] Wu Y, Wang Y, Li P, Wang A, Zhang M. Can fixed time delay signature be concealed in chaotic semiconductor laser with optical feedback IEEE Journal of Quantum Electronics, 2012, 48(11): 1371–1379

    [9] Rontani D, Locquet A, Sciamanna M, Citrin D S, Ortin S. Timedelay identification in a chaotic semiconductor laser with optical feedback: a dynamical point of view. IEEE Journal of Quantum Electronics, 2009, 45(7): 879–891

    [10] Ortín S, Gutiérrez J M, Pesquera L, Vasquez H. Nonlinear dynamics extraction for time-delay systems using modular neural networks synchronization and prediction. Physica A: Statistical Mechanics & Its Applications, 2005, 351(1): 133–141

    [11] Nguimdo R M, Soriano M C, Colet P. Role of the phase in the identification of delay time in semiconductor lasers with optical feedback. Optics Letters, 2011, 36(22): 4332–4334

    [12] Rontani D, Locquet A, Sciamanna M, Citrin D S. Loss of time-delay signature in the chaotic output of a semiconductor laser with optical feedback. Optics Letters, 2007, 32(20): 2960–2962

    [13] Uchida A. Optical Communication with Chaotic Lasers. Hoboken: Wiley, 2012

    [14] Goedgebuer J P, Levy P, Larger L, Chen C C, Rhodes W T. Optical communication with synchronized hyperchaos generated electrooptically. IEEE Journal of Quantum Electronics, 2002, 38(9): 1178– 1183

    [15] Nguimdo R M. Chaos and Synchronization in opto-electronic devices with delayed feedback. Dissertation for the Doctoral Degree. Illes Balears: Universitat de les Illes Balears, 2011

    [16] Nourine M, Chembo Y K, Larger L. Wideband chaos generation using a delayed oscillator and a two-dimensional nonlinearity induced by a quadrature phase-shift-keying electro-optic modulator. Optics Letters, 2011, 36(15): 2833–2835

    [17] Lavrov R, Peil M, Jacquot M, Larger L, Udaltsov V, Dudley J. Electro-optic delay oscillator with nonlocal nonlinearity: optical phase dynamics, chaos, and synchronization. Physical Review E: Statistical, Nonlinear, and Soft Matter Physics, 2009, 80(2): 026207

    [18] Nguimdo R M, Verschaffelt G, Danckaert J, Van der Sande G. Loss of time-delay signature in chaotic semiconductor ring lasers. Optics Letters, 2012, 37(13): 2541–2543

    [19] Hou T, Yi L, Ke J. Time delay signature concealment in chaotic systems for enhanced security. Submitted to Photonics Research, 2016

    [20] Hizanidis J, Deligiannidis S, Bogris A, Syvridis D. Enhancement of chaos encryption potential by combining all-optical and electrooptical chaos generators. IEEE Journal of Quantum Electronics, 2010, 46(11): 1642–1649

    [21] Nguimdo R M, Colet P, Larger L, Pesquera L. Digital key for chaos communication performing time delay concealment. Physical Review Letters, 2011, 107(3): 034103

    [22] Nguimdo R M, Colet P. Electro-optic phase chaos systems with an internal variable and a digital key. Optics Express, 2012, 20(23): 25333–25344

    [23] Aromataris G, Annovazzi-Lodi V. Enhancing privacy of chaotic communications by double masking. IEEE Journal of Quantum Electronics, 2013, 49(11): 955–959

    [24] Ursini L, Santagiustina M, Annovazzi-Lodi V. Enhancing chaotic communication performances by Manchester coding. IEEE Photonics Technology Letters, 2008, 20(6): 401–403

    [25] Van Wiggeren G D, Roy R. Communication with chaotic lasers. Science, 1998, 279(5354): 1198–1200

    [26] Anishchenko V S, Vadivasova T E, Postnov D E, Safonova M A. Synchronization of chaos. International Journal of Bifurcation and Chaos in Applied Sciences and Engineering, 1992, 2(3): 633–644

    [27] Colet P, Roy R. Digital communication with synchronized chaotic lasers. Optics Letters, 1994, 19(24): 2056–2058

    [28] Larger L, Goedgebuer J, Udaltsov V. Ikeda-based nonlinear delayed dynamics for application to secure optical transmission systems using chaos. Comptes Rendus Physique, 2004, 5(6): 669–681

    [29] Annovazzi-Lodi V, Donati S, Scire A. Synchronization of chaotic lasers by optical feedback for cryptographic applications. IEEE Journal of Quantum Electronics, 1997, 33(9): 1449–1454

    [30] Goedgebuer J P, Larger L, Porte H. Optical cryptosystem based on synchronization of hyperchaos generated by a delayed feedback tunable laser diode. Physical Review Letters, 1998, 80(10): 2249– 2252

    [31] Mirasso C R, Colet P, Garcia-Fernandez P. Synchronization of chaotic semiconductor lasers: application to encoded communications. IEEE Photonics Technology Letters, 1996, 8(2): 299–301

    [32] Uchida A, Sato T, Kannari F. Suppression of chaotic oscillations in a microchip laser by injection of a new orbit into the chaotic attractor. Optics Letters, 1998, 23(6): 460–462

    [33] Fischer I, Yun L,Davis P.Synchronization of chaotic semiconductor laser dynamics on subnanosecond time scales and its potential for chaos communication. Physical Review A (Atomic, Molecular, and Optical Physics), 2000, 62(1): 011801/1–4

    [34] Sivaprakasam S, Shore K A. Message encoding and decoding using chaotic external-cavity diode lasers. IEEE Journal of Quantum Electronics, 2000, 36(1): 35–39

    [35] Tang S, Liu J M. Message encoding-decoding at 2.5 Gbits/s through synchronization of chaotic pulsing semiconductor lasers. Optics Letters, 2001, 26(23): 1843–1845

    [36] Abarbanel H, Kennel M B, Illing L, Tang S, Chen H F, Liu J M. Synchronization and communication using semiconductor lasers with optoelectronic feedback. IEEE Journal of Quantum Electronics, 2001, 37(10): 1301–1311

    [37] Kusumoto K, Ohtsubo J. 1.5-GHz message transmission based on synchronization of chaos in semiconductor lasers. Optics Letters, 2002, 27(12): 989–991

    [38] Argyris A, Hamacher M, Chlouverakis K E, Bogris A, Syvridis D. Photonic integrated device for chaos applications in communications. Physical Review Letters, 2008, 100(19): 194101

    [39] Annovazzi-Lodi V, Benedetti M, Merlo S, Norgia M, Provinzano B. Optical chaos masking of video signals. IEEE Photonics Technology Letters, 2005, 17(9): 1995–1997

    [40] Argyris A, Grivas E, Hamacher M, Bogris A, Syvridis D. Chaos-ona- chip secures data transmission in optical fiber links. Optics Express, 2010, 18(5): 5188–5198

    [41] Gastaud N, Poinsot S, Larger L, Merolla J M, Hanna M, Goedgebuer J P, Malassenet F. Electro-optical chaos for multi-10 Gbit/s optical transmissions. Electronics Letters, 2004, 40(14): 898– 899

    Junxiang KE, Lilin YI, Tongtong HOU, Weisheng HU. Key technologies in chaotic optical communications[J]. Frontiers of Optoelectronics, 2016, 9(3): 508
    Download Citation