Numerical Simulation of Chaotic Laser Secure Communication

Article Preview

Abstract:

Using the idea of drive-response synchronization, we discuss the principle, numerical simulation of chaotic laser communication. Compared to traditional communications systems, the chaotic laser communication system has a well-kept secret performance, but the chaos synchronization requirements are very strict.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 798-799)

Pages:

570-573

Citation:

Online since:

September 2013

Authors:

Export:

Price:

[1] R. Roy, K.S. Physical Reviwe Letters, 1994, 72(13) (2009).

Google Scholar

[2] Y. Liu, H. F. Chen, J. M. Liu, et al. Physical Review A, 2001, 63(3) 031802.

Google Scholar

[3] D. Kanakidis, A. Argyris, D. Syvridis. Journal of Lightwave Technology, 2003, 21(3)750.

Google Scholar

[4] D. W. Sukow, L. K. Blackburn, A. R. Spain, et al. Optics Letters, 2004, 29(20)2393.

Google Scholar

[5] F. Zhang, P. L. Chu, R. Lai, et al. IEEE Photonics technology letters, 2005, 17(3)549.

Google Scholar

[6] D. W. Sukow, A. Gavrielides, T. Mclachlan, et al. Physical review A, 2006, 74, 023812.

Google Scholar

[7] R. Vicente, C. R. Mirasso, I. Fischer. Optics Letters, 2007, 32(4)403.

Google Scholar

[8] I. Gatare, M. Sciamanna, A. Locquet, et al. Optics Letters, 2007, 32(12)1629.

Google Scholar

[9] Y. Hong, M. W. Lee, J. Paul, et al. Optics Letters, 2008, 33(6) 587.

Google Scholar

[10] A. Bogris, P. Rizomiliotis, E. Konstantinos, et al. IEEE Journal of Quantum Electronics, 2008, 44(2) 119.

Google Scholar

[11] A. Mecozzi, C. Antonelli, V. A. Lodi, et al. Optics Letters, 2009, 34(9)1387.

Google Scholar

[12] D. Z. Zhong, Z. M. Wu, Optics communications, 2009, 282, 1631.

Google Scholar

[13] J. Z. Zhang, A. B. Wang, J. F. Wang, et al. Optics Express, 2009, 17(8)6357.

Google Scholar

[14] J. Liu, Z. M. Wu, G. Q. Xia. Optics Express, 2009, 17(15) 12619.

Google Scholar

[15] P. Li, J. G. Wu, Z. M. Wu, et al. Optics Express, 2011, 19(2)2392121.

Google Scholar

[16] S. Y. Xiang, P. Wei, B. Luo, et al. Journal of Lightwave Technology, 2011, 29(14)2173.

Google Scholar

[17] A. Argyris, D. Syvridis; L. Larger, et al. Nature, 2005, 438: 343.

Google Scholar

[18] E. A. Shahverdiev, K. A. Shore. Physical Review E, 2008, 77(5)057201.

Google Scholar

[19] S. Lepri, G. Giacomelli, A. Politi, et al. Physica (Amsterdam) D, 1993, 70: 235.

Google Scholar

[20] M. W. Lee, L. Larger, V. S. Udaltsov. et al. Optics Letters, 2004, 29: 325.

Google Scholar

[21] C. Masoller, A. C. Mart´ı. Physical Review Letters. 2005, 94: 134102.

Google Scholar

[22] M. W. Lee, P. Rees, K. A. Shore, et al. IEE Proc. -Optoelectronics. 2005. 152: 97.

Google Scholar

[23] W. H. Kye, M. Choi, M. W. Kim, et al. Physics Letters A, 2004, 322: 338.

Google Scholar

[24] E. M. Shahverdiev, K. A. Shore. Optics Communications. 2009, 282: 3568.

Google Scholar