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We reveal theoretically chaos and its characterization in a multi-quantum-well (MQW) laser based on periodic-optical pulse injection. Under the effect of periodic-optical pulse injection, the multi-quantum-well laser reveals rich nonlinear dynamics. The results show that the laser can be controlled into single-periodic, dual-periodic, triple-periodic, four-periodic, multi-periodic and chaos for different modulation frequencies and coupling constants; the system has a larger space of parameters.
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Tom
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761--772
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Bibliogr. 18 poz., rys., wykr.
Bibliografia
- [1] HEIL T., MULET J., FISCHER I., MIRASSO C.R., PEIL M., COLET P., ELSASSER W., ON/OFF phase shift keying for chaos-encrypted communication using external-cavity semiconductor lasers, IEEE Journal of Quantum Electronics 38(9), 2002, pp. 1162–1170.
- [2] TANG S., LIU J.M., Message encoding–decoding at 2.5 Gbits/s through synchronization of chaotic pulsing semiconductor lasers, Optics Letters 26(23), 2001, pp. 1843–1845.
- [3] MIN WON LEE, PAUL J., PIERCE I., SHORE K.A., Frequency-detuned synchronization switching in chaotic DFB laser diodes, IEEE Journal of Quantum Electronics 41(3), 2005, pp. 302–307.
- [4] SHENG-KWANG HWANG, HOW-FOO CHEN, CHE-YANG LIN, All-optical frequency conversion using nonlinear dynamics of semiconductor lasers, Optics Letters 34(6), 2009, pp. 812–814.
- [5] FAN-YI LIN, JIA-MING LIU, Ambiguity functions of laser-based chaotic radar, IEEE Journal of Quantum Electronics 40(12), 2004, pp. 1732–1738.
- [6] FAN-YI LIN, SHIOU-YUAN TU, CHIEN-CHIH HUANG, SHU-MING CHANG, Nonlinear dynamics of semiconductor lasers under repetitive optical pulse injection, IEEE Journal of Selected Topics in Quantum Electronics 15(3), 2009, pp. 604–611.
- [7] YU-SHAN JUAN, FAN-YI LIN, Microwave-frequency-comb generation utilizing a semiconductor laser subject to optical pulse injection from an optoelectronic feedback laser, Optics Letters 34(11), 2009, pp. 1636–1638.
- [8] LIN F.Y., LIU J.M., Harmonic frequency locking in a semiconductor laser with delayed negative optoelectronic feedback, Applied Physics Letters 81(17), 2002, pp. 3128–3120.
- [9] XIAOFENG LI, WEI PAN, BIN LUO, DONG MA, Nonlinear dynamics of two mutually injected external-cavity semiconductor lasers, Semiconductor Science and Technology 21(1), 2006, pp. 25–34.
- [10] XIAOFENG LI, WEI PAN, BIN LUO, DONG MA, GUO DENG, Theoretical analysis of multi-transverse-mode characteristics of vertical-cavity surface-emitting lasers, Semiconductor Science and Technology 20(6), 2005, pp. 505–513.
- [11] NING JIANG, WEI PAN, BIN LUO, LIANSHAN YAN, SHUIYING XIANG, LEI YANG, DI ZHENG, NIANQIANG LI, Influence of injection current on the synchronization and communication performance of closed-loop chaotic semiconductor lasers, Optics Letters 36(16), 2011, pp. 3197–3199.
- [12] BENNETT S., SNOWDEN C.M., IEZEKIEL S., Nonlinear dynamics in directly modulated multiple-quantum-well laser diodes, IEEE Journal of Quantum Electronics 33(11), 1997, pp.2076–2083.
- [13] SENLIN YAN, Control of chaos in an external-cavity multi-quantum-well laser subjected to dual-wedges and optical dual-feedback, Chinese Science Bulletin 54(7), 2009, pp. 1158–1163.
- [14] YAN SEN-LIN, Bifurcation and locking in an multi-quantum-well laser subjected to external injection, Optics Communications 282(17), 2009, pp. 3558–3564.
- [15] YAN SEN LIN, Control of chaos in an injection multi-quantum well laser via shifting or modulating the injection light, Journal of Modern Optics 56(4), 2009, pp. 539–547.
- [16] YAN SEN-LIN, Study of dual-directional high rate secure communication systems using chaotic multiple-quantum-well lasers, Chinese Physics 16(11), 2007, pp. 3271–3278.
- [17] JUANG C., HUANG C.C., HWANG T.M., JUANG J., LIN W.W., Optoelectronic delayed-feedback and chaos in quantum-well laser diodes, Optics Communications 192(1–2), 2001, pp. 77–81.
- [18] LAYEGHI H., ARJMAND M.T., SALARIEH H., ALASTY A., Stabilizing periodic orbits of chaotic systems using fuzzy adaptive sliding mode control, Chaos, Solitons and Fractals 37(4), 2008, pp. 1125–1135.
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Bibliografia
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