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针对单模Lorenz-Haken激光系统中存在的混沌现象, 提出一种单变量间歇反馈控制方案. 数值结果表明, 通过选择不同的控制强度, 可将Lorenz-Haken激光混沌系统镇定到1周期态、2周期态、4周期态、6周期态、8周期态等. 同时, 利用该控制方案, 实现了Lorenz-Haken激光混沌系统的同步.
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关键词:
- 单模Lorenz-Haken激光系统 /
- 间歇反馈 /
- 混沌镇定 /
- 混沌同步
For the chaos existing in a single-mode Haken-Lorenz laser system, a scheme of intermittent feedback with one variable is proposed. Numerical simulation results show that with the increase of appropriate control intensity, the Haken-Lorenz chaotic system can be suppressed to period 1, period 2, period 4, period 6, and period 8. Meanwhile, the synchronization of Haken-Lorenz chaotic systems is achieved based on the scheme of intermittent feedback.-
Keywords:
- single-mode Haken-Lorenz laser system /
- intermittent feedback /
- chaos suppress /
- synchronization
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[22] Jiang N, Pan W, Luo B, Xiang S Y, Yang L 2012 IEEE Photon.Technol. Lett. 24 1094
[23] Zhao Y M, Xia G Q, Wu J G, Wu Z M 2013 Acta Phys. Sin. 62 214206 (in Chinese) [赵艳梅, 夏光琼, 吴加贵, 吴正茂 2013 62 214206]
[24] Li C L, Tong Y N, Li H M, Su K L 2012 Phys. Scr. 86 055003
[25] Meziane B, Ayadi S 2008 Opt. Commun. 281 4061
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[1] Zhao Y B, Tse C K, Feng J C, Guo Y C 2013 Circuits Syst Signal Proces 32 1013
[2] Yin J L, Zhao L W, Tian L X 2014 Chin. Phys. B 23 020204
[3] Wang G Y, He J L, Yuan F, Peng C J 2013 Chin. Phys. Lett. 30 110506
[4] Wei D Q, Zhang B, Luo X S, Zeng SY, Qiu D Y 2013 IEEE. Trans. Circ. Syst. II 60 692
[5] Li Y L, Xu D L, Fu Y M, Zhou J X 2013 Int. J. Bifurcation and Chaos 23 1350096
[6] He S C, Zhou G H, Xu J P, Bao B C, Yang P 2013 Acta Phys. Sin. 62 110503 (in Chinese) [何圣仲, 周国华, 许建平, 包伯成, 杨平. 2013 62 110503]
[7] Ott E, Grebogi C, Yorke J A 1990 Phys. Rev. Lett. 64 1196
[8] Pecora L M, Carroll T L 1990 Phys. Rev. Lett. 64 821
[9] Luo R Z, He L M 2014 Chin. Phys. B 23 070506
[10] Li C L, Su K L, Wu L 2013 J Comput Nonlinear Dynam 8 031005
[11] Wen G L, Xu H D, Xie J H 2011 Nonlinear Dyn 64 49
[12] Huang L Y, Luo X S 2006 Chin. Phys. Lett. 23 297
[13] Huang T W, Li C D, Liu X Z 2008 Chaos 18 033122
[14] Li C D, Feng G, Liao X F 2007 IEEE. Trans. Circ. Syst. II 54 1019
[15] Ma J, Wang Q Y, Jin W Y, Xia Y F 2008 Chin. Phys. Lett. 25 3582
[16] Wang C N, Ma J, Liu Y, Huang L 2012 Nonlinear Dyn 67 139
[17] Zhong D Z, Xia G Q, Wang F, Wu Z M 2007 Acta Phys. Sin. 56 327 (in Chinese) [钟东洲, 夏光琼, 王飞, 吴正茂. 2007 56 327]
[18] Li F, Pan W, Luo B 2008 Acta Sinica Quantum Optica 14 207 (in Chinese) [李丰, 潘炜, 罗斌 2008 量子光学学报 14 207]
[19] Deng T, Xia G Q, Wu Z M, Lin X D, Wu J G 2011 Opt. Express 19 8762
[20] Zhang W L, Pan W, Luo B, Zou X H, Wang M Y, Zhou Z 2008 Opt. Lett. 33 237
[21] Wu J G, Wu Z M, Tang X, Fan L, Deng W, Xia G Q 2013 IEEE Photon.Technol. Lett. 25 587
[22] Jiang N, Pan W, Luo B, Xiang S Y, Yang L 2012 IEEE Photon.Technol. Lett. 24 1094
[23] Zhao Y M, Xia G Q, Wu J G, Wu Z M 2013 Acta Phys. Sin. 62 214206 (in Chinese) [赵艳梅, 夏光琼, 吴加贵, 吴正茂 2013 62 214206]
[24] Li C L, Tong Y N, Li H M, Su K L 2012 Phys. Scr. 86 055003
[25] Meziane B, Ayadi S 2008 Opt. Commun. 281 4061
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