Chinese Journal of Lasers, Volume. 50, Issue 5, 0506002(2023)
Experiment on Long-Distance Fidelity Transmission of Laser Chaos over Single-Span Optical Fiber
[1] Sun W Y, Hu B J, Wang H. Chaos synchronization communication based on dual-path mutual coupling semiconductor lasers[J]. Laser & Optoelectronics Progress, 56, 211404(2019).
[2] Yan S L. Theory and technique of cross transmittance and alternate parallel reception of laser chaos in secure communication[J]. Chinese Journal of Lasers, 47, 0906001(2020).
[3] Koizumi H, Morikatsu S, Aida H et al. Information-theoretic secure key distribution based on common random-signal induced synchronization in unidirectionally-coupled cascades of semiconductor lasers[J]. Optics Express, 21, 17869-17893(2013).
[4] Sasaki T, Kakesu I, Mitsui Y et al. Common-signal-induced synchronization in photonic integrated circuits and its application to secure key distribution[J]. Optics Express, 25, 26029-26044(2017).
[5] Ai J Z, Wang L L, Wang J. Secure communications of CAP-4 and OOK signals over MMF based on electro-optic chaos[J]. Optics Letters, 42, 3662-3665(2017).
[6] Li N Q, Susanto H, Cemlyn B et al. Secure communication systems based on chaos in optically pumped spin-VCSELs[J]. Optics Letters, 42, 3494-3497(2017).
[7] Jiang N, Zhao A K, Xue C P et al. Physical secure optical communication based on private chaotic spectral phase encryption/decryption[J]. Optics Letters, 44, 1536-1539(2019).
[8] Ke J X, Yi L L, Yang Z et al. 32 Gb/s chaotic optical communications by deep-learning-based chaos synchronization[J]. Optics Letters, 44, 5776-5779(2019).
[9] Wang L S, Mao X X, Wang A B et al. Scheme of coherent optical chaos communication[J]. Optics Letters, 45, 4762-4765(2020).
[10] Jiang N, Xue C P, Liu D et al. Secure key distribution based on chaos synchronization of VCSELs subject to symmetric random-polarization optical injection[J]. Optics Letters, 42, 1055-1058(2017).
[11] Zhao Z X, Cheng M F, Luo C K et al. Semiconductor-laser-based hybrid chaos source and its application in secure key distribution[J]. Optics Letters, 44, 2605-2608(2019).
[12] Wang L S, Chao M, Wang A B et al. High-speed physical key distribution based on dispersion-shift-keying chaos synchronization in commonly driven semiconductor lasers without external feedback[J]. Optics Express, 28, 37919-37935(2020).
[13] Huang Y, Zhou P, Li N Q. High-speed secure key distribution based on chaos synchronization in optically pumped QD spin-polarized VCSELs[J]. Optics Express, 29, 19675-19689(2021).
[14] Wu C R, Gao H, Wang L S et al. High-speed secure key distribution based on symmetric phase-shift-keying chaos synchronization[J]. Chinese Journal of Lasers, 49, 0406001(2022).
[15] Argyris A, Syvridis D, Larger L et al. Chaos-based communications at high bit rates using commercial fibre-optic links[J]. Nature, 438, 343-346(2005).
[16] Argyris A, Grivas E, Hamacher M et al. Chaos-on-a-chip secures data transmission in optical fiber links[J]. Optics Express, 18, 5188-5198(2010).
[17] Lavrov R, Jacquot M, Larger L. Nonlocal nonlinear electro-optic phase dynamics demonstrating 10 Gb/s chaos communications[J]. IEEE Journal of Quantum Electronics, 46, 1430-1435(2010).
[18] Yoshimura K, Muramatsu J, Davis P et al. Secure key distribution using correlated randomness in lasers driven by common random light[J]. Physical Review Letters, 108, 070602(2012).
[19] Ke J X, Yi L L, Xia G Q et al. Chaotic optical communications over 100-km fiber transmission at 30-Gb/s bit rate[J]. Optics Letters, 43, 1323-1326(2018).
[20] Gao H, Wang A B, Wang L S et al. 0.75 Gbit/s high-speed classical key distribution with mode-shift keying chaos synchronization of Fabry-Perot lasers[J]. Light: Science & Applications, 10, 172(2021).
[21] Kanakidis D, Bogris A, Argyris A et al. Numerical investigation of fiber transmission of a chaotic encrypted message using dispersion compensation schemes[J]. Journal of Lightwave Technology, 22, 2256-2263(2004).
[22] Li L F, Wu Z M, Li J et al. Influences of chromatic dispersion and nonlinearity in fiber on the chaos synchronization[J]. Proceedings of SPIE, 6839, 183-188(2008).
[23] Yang Z, Yi L L, Ke J X et al. Chaotic optical communication over 1000 km transmission by coherent detection[J]. Journal of Lightwave Technology, 38, 4648-4655(2020).
[24] Fu Y D, Cheng M F, Shao W D et al. Analog-digital hybrid chaos-based long-haul coherent optical secure communication[J]. Optics Letters, 46, 1506-1509(2021).
[25] Sun Y C, Mao X X, Wang A B. Phase chaos synchronization of semiconductor laser with open-loop unidirectional coupling configuration[J]. Chinese Journal of Lasers, 47, 1001003(2020).
[26] Lin F Y, Chao Y K, Wu T C. Effective bandwidths of broadband chaotic signals[J]. IEEE Journal of Quantum Electronics, 48, 1010-1014(2012).
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Yushan Wu, Junli Wang, Xiaoxin Mao, Longsheng Wang, Zhiwei Jia, Anbang Wang. Experiment on Long-Distance Fidelity Transmission of Laser Chaos over Single-Span Optical Fiber[J]. Chinese Journal of Lasers, 2023, 50(5): 0506002
Category: Fiber optics and optical communication
Received: May. 18, 2022
Accepted: Jun. 22, 2022
Published Online: Feb. 14, 2023
The Author Email: Wang Anbang (wanganbang@tyut.edu.cn)