• DocumentCode
    43725
  • Title

    Fast and Tunable All-Optical Physical Random Number Generator Based on Direct Quantization of Chaotic Self-Pulsations in Two-Section Semiconductor Lasers

  • Author

    Pu Li ; Yun-Cai Wang ; An-Bang Wang ; Bing-Jie Wang

  • Author_Institution
    Key Lab. of Adv. Transducers & Intell. Control Syst., Taiyuan Univ. of Technol., Taiyuan, China
  • Volume
    19
  • Issue
    4
  • fYear
    2013
  • fDate
    July-Aug. 2013
  • Abstract
    We present numerically an all-optical approach to generate fast physical random numbers. This approach is based on chaotic self-pulsations, a kind of chaos superimposed on periodic pulse trains. Two-section semiconductor lasers (TSSLs) can exhibit this phenomenon of chaos, under an appropriate external optical injection. Simulations demonstrate that, without sampling and postprocessing procedures, this technique can produce random numbers at gigabit per second rates through directly quantizing the chaotic self-pulsations via an all-optical flip-flop. Further simulation results show that the random number generation rate can be continuously and easily tuned in a large range from 5 to 10 Gb/s by adjusting some control parameters of the TSSL subject to continuous-wave optical injection, such as injection strength, frequency detuning, gain current, and absorber bias. Moreover, our numerical studies show that these generated random numbers sequences above with the proposed method can pass successfully standard benchmark tests for randomness.
  • Keywords
    benchmark testing; optical chaos; optical logic; optical tuning; quantisation (signal); random number generation; semiconductor lasers; TSSL; absorber bias; all-optical flip-flop; benchmark tests; bit rate 5 Gbit/s to 10 Gbit/s; chaotic self-pulsations; continuous-wave optical injection; direct quantization; external optical injection; frequency detuning; gain current; injection strength; periodic pulse trains; tunable all-optical physical random number generator; two-section semiconductor lasers; Chaos; Optical attenuators; Optical fibers; Optical pulses; Optical pumping; Semiconductor lasers; Chaos; optical signal processing; random number generation; semiconductor lasers;
  • fLanguage
    English
  • Journal_Title
    Selected Topics in Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    1077-260X
  • Type

    jour

  • DOI
    10.1109/JSTQE.2012.2219298
  • Filename
    6304907