中国激光, 2018, 45 (5): 0501003, 网络出版: 2018-05-21  

马赫-曾德尔干涉仪对抑制延时特征的作用机理研究 下载: 719次

Study on the Mechanism of Mach-Zehnder Interferometer for Suppressing the Delay Time Signature
作者单位
中国人民解放军信息工程大学理学院, 河南 郑州 450001
引用该论文

吴天安, 张晓旭, 张胜海, 兰淑静. 马赫-曾德尔干涉仪对抑制延时特征的作用机理研究[J]. 中国激光, 2018, 45(5): 0501003.

Wu Tianan, Zhang Xiaoxu, Zhang Shenghai, Lan Shujing. Study on the Mechanism of Mach-Zehnder Interferometer for Suppressing the Delay Time Signature[J]. Chinese Journal of Lasers, 2018, 45(5): 0501003.

参考文献

[1] Matsuura T, Uchida A, Yoshimori S. Chaotic wavelength division multiplexing for optical communication[J]. Optics Letters, 2004, 29(23): 2731-2733.

    Matsuura T, Uchida A, Yoshimori S. Chaotic wavelength division multiplexing for optical communication[J]. Optics Letters, 2004, 29(23): 2731-2733.

[2] Argyris A, Syvridis D, Larger L, et al. Chaos-based communications at high bit rates using commercial fibre-optic links[J]. Nature, 2005, 438(7066): 343-346.

    Argyris A, Syvridis D, Larger L, et al. Chaos-based communications at high bit rates using commercial fibre-optic links[J]. Nature, 2005, 438(7066): 343-346.

[3] Hong Y H, Lee M W, Paul J, et al. GHz bandwidth message transmission using chaotic vertical-cavity surface-emitting lasers[J]. Journal of Lightwave Technology, 2009, 27(22): 5099-5105.

    Hong Y H, Lee M W, Paul J, et al. GHz bandwidth message transmission using chaotic vertical-cavity surface-emitting lasers[J]. Journal of Lightwave Technology, 2009, 27(22): 5099-5105.

[4] Jiang N, Zhang C F, Qiu K. Secure passive optical network based on chaos synchronization[J]. Optics Letters, 2012, 37(21): 4501-4503.

    Jiang N, Zhang C F, Qiu K. Secure passive optical network based on chaos synchronization[J]. Optics Letters, 2012, 37(21): 4501-4503.

[5] Uchida A, Amano K, Inoue M, et al. Fast physical random bit generation with chaotic semiconductor lasers[J]. Nature Photonics, 2008, 2(12): 728-732.

    Uchida A, Amano K, Inoue M, et al. Fast physical random bit generation with chaotic semiconductor lasers[J]. Nature Photonics, 2008, 2(12): 728-732.

[6] Kanter I, Aviad Y, Reidler I, et al. An optical ultrafast random bit generator[J]. Nature Photonics, 2010, 4(1): 58-61.

    Kanter I, Aviad Y, Reidler I, et al. An optical ultrafast random bit generator[J]. Nature Photonics, 2010, 4(1): 58-61.

[7] Wang A B, Li P, Zhang J G, et al. 4.5 Gbps high-speed real-time physical random bit generator[J]. Optics Express, 2013, 21(17): 20452-20462.

    Wang A B, Li P, Zhang J G, et al. 4.5 Gbps high-speed real-time physical random bit generator[J]. Optics Express, 2013, 21(17): 20452-20462.

[8] Sakuraba R, Iwakawa K, Kanno K, et al. Tb/s physical random bit generation with bandwidth-enhanced chaos in three-cascaded semiconductor lasers[J]. Optics Express, 2015, 23(2): 1470-1490.

    Sakuraba R, Iwakawa K, Kanno K, et al. Tb/s physical random bit generation with bandwidth-enhanced chaos in three-cascaded semiconductor lasers[J]. Optics Express, 2015, 23(2): 1470-1490.

[9] Lin F Y, Liu J M. Diverse waveform generation using semiconductor lasers for radar and microwave applications[J]. IEEE Journal of Quantum Electronics, 2004, 40(6): 682-689.

    Lin F Y, Liu J M. Diverse waveform generation using semiconductor lasers for radar and microwave applications[J]. IEEE Journal of Quantum Electronics, 2004, 40(6): 682-689.

[10] Wu W T, Liao Y H, Lin F Y. Noise suppressions in synchronized chaos lidars[J]. Optics Express, 2010, 18(25): 26155-26162.

    Wu W T, Liao Y H, Lin F Y. Noise suppressions in synchronized chaos lidars[J]. Optics Express, 2010, 18(25): 26155-26162.

[11] Rontani D, Locquet A, Sciamanna M, et al. Loss of time-delay signature in the chaotic output of a semiconductor laser with optical feedback[J]. Optics Letters, 2007, 32(20): 2960-2962.

    Rontani D, Locquet A, Sciamanna M, et al. Loss of time-delay signature in the chaotic output of a semiconductor laser with optical feedback[J]. Optics Letters, 2007, 32(20): 2960-2962.

[12] Li S S, Liu Q, Chan S C. Distributed feedbacks for time-delay signature suppression of chaos generated from a semiconductor laser[J]. IEEE Photonics Journal, 2012, 4(5): 1930-1935.

    Li S S, Liu Q, Chan S C. Distributed feedbacks for time-delay signature suppression of chaos generated from a semiconductor laser[J]. IEEE Photonics Journal, 2012, 4(5): 1930-1935.

[13] Wang D M, Wang L S, Zhao T, et al. Time delay signature elimination of chaos in a semiconductor laser by dispersive feedback from a chirped FBG[J]. Optics Express, 2017, 25(10): 10911-10924.

    Wang D M, Wang L S, Zhao T, et al. Time delay signature elimination of chaos in a semiconductor laser by dispersive feedback from a chirped FBG[J]. Optics Express, 2017, 25(10): 10911-10924.

[14] Wu Y, Wang B J, Zhang J Z, et al. Suppression of time delay signature in chaotic semiconductor lasers with filtered optical feedback[J]. Mathematical Problems in Engineering, 2013, 2013: 1-7.

    Wu Y, Wang B J, Zhang J Z, et al. Suppression of time delay signature in chaotic semiconductor lasers with filtered optical feedback[J]. Mathematical Problems in Engineering, 2013, 2013: 1-7.

[15] 张晓旭, 吴天安, 常凯歌, 等. 单端反馈互耦合垂直腔面发射激光器混沌输出的时延特征和带宽分析[J]. 中国激光, 2017, 44(5): 0501010.

    张晓旭, 吴天安, 常凯歌, 等. 单端反馈互耦合垂直腔面发射激光器混沌输出的时延特征和带宽分析[J]. 中国激光, 2017, 44(5): 0501010.

    Zhang X X, Wu T A, Chang K G, et al. Time-delay characteristic and bandwidth analysis of chaotic output from single-ended feedback and mutually coupled vertical-cavity surface-emitting lasers[J]. Chinese Journal of Lasers, 2017, 44(5): 0501010.

    Zhang X X, Wu T A, Chang K G, et al. Time-delay characteristic and bandwidth analysis of chaotic output from single-ended feedback and mutually coupled vertical-cavity surface-emitting lasers[J]. Chinese Journal of Lasers, 2017, 44(5): 0501010.

[16] Mu P H, Pan W, Yan L S, et al. Experimental evidence of time-delay concealment in a DFB laser with dual-chaotic optical injections[J]. IEEE Photonics Technology Letters, 2016, 28(2): 131-134.

    Mu P H, Pan W, Yan L S, et al. Experimental evidence of time-delay concealment in a DFB laser with dual-chaotic optical injections[J]. IEEE Photonics Technology Letters, 2016, 28(2): 131-134.

[17] Li N Q, Pan W, Xiang S Y, et al. Loss of time delay signature in broadband cascade-coupled semiconductor lasers[J]. IEEE Photonics Technology Letters, 2012, 24(23): 2187-2190.

    Li N Q, Pan W, Xiang S Y, et al. Loss of time delay signature in broadband cascade-coupled semiconductor lasers[J]. IEEE Photonics Technology Letters, 2012, 24(23): 2187-2190.

[18] Wu J G, Xia G Q, Tang X, et al. Time delay signature concealment of optical feedback induced chaos in an external cavity semiconductor laser[J]. Optics Express, 2010, 18(7): 6661-6666.

    Wu J G, Xia G Q, Tang X, et al. Time delay signature concealment of optical feedback induced chaos in an external cavity semiconductor laser[J]. Optics Express, 2010, 18(7): 6661-6666.

[19] Wang A B, Yang Y B, Wang B J, et al. Generation of wideband chaos with suppressed time-delay signature by delayed self-interference[J]. Optics Express, 2013, 21(7): 8701-8710.

    Wang A B, Yang Y B, Wang B J, et al. Generation of wideband chaos with suppressed time-delay signature by delayed self-interference[J]. Optics Express, 2013, 21(7): 8701-8710.

[20] Xiang S Y, Pan W, Wen A J, et al. Conceal time delay signature of chaos in semiconductor lasers with dual-path injection[J]. IEEE Photonics Technology Letters, 2013, 25(14): 1398-1401.

    Xiang S Y, Pan W, Wen A J, et al. Conceal time delay signature of chaos in semiconductor lasers with dual-path injection[J]. IEEE Photonics Technology Letters, 2013, 25(14): 1398-1401.

[21] Xiang S Y, Pan W, Zhang L Y, et al. Phase-modulated dual-path feedback for time delay signature suppression from intensity and phase chaos in semiconductor laser[J]. Optics Communications, 2014, 324(15): 38-46.

    Xiang S Y, Pan W, Zhang L Y, et al. Phase-modulated dual-path feedback for time delay signature suppression from intensity and phase chaos in semiconductor laser[J]. Optics Communications, 2014, 324(15): 38-46.

[22] Wu T A, Sun W Y, Zhang X X, et al. Concealment of time delay signature of chaotic output in a slave semiconductor laser with chaos laser injection[J]. Optics Communications, 2016, 381(15): 174-179.

    Wu T A, Sun W Y, Zhang X X, et al. Concealment of time delay signature of chaotic output in a slave semiconductor laser with chaos laser injection[J]. Optics Communications, 2016, 381(15): 174-179.

[23] 孙巍阳, 张胜海, 吴天安, 等. 双光反馈双光注入混沌半导体激光器延时特征峰抑制[J]. 激光与光电子学进展, 2016, 53(12): 121406.

    孙巍阳, 张胜海, 吴天安, 等. 双光反馈双光注入混沌半导体激光器延时特征峰抑制[J]. 激光与光电子学进展, 2016, 53(12): 121406.

    Sun W Y, Zhang S H, Wu T A, et al. Time delay signature concealment in chaotic semiconductor lasers with double optical feedback and dual-path injection[J]. Laser & Optoelectronics Progress, 2016, 53(12): 121406.

    Sun W Y, Zhang S H, Wu T A, et al. Time delay signature concealment in chaotic semiconductor lasers with double optical feedback and dual-path injection[J]. Laser & Optoelectronics Progress, 2016, 53(12): 121406.

[24] Lang R, Kobayashi K. External optical feedback effects on semiconductor injection laser properties[J]. IEEE Journal of Quantum Electronics, 1980, 16(3): 347-355.

    Lang R, Kobayashi K. External optical feedback effects on semiconductor injection laser properties[J]. IEEE Journal of Quantum Electronics, 1980, 16(3): 347-355.

[25] Sukow D W, Heil T, Fischer I, et al. Picosecond intensity statistics of semiconductor lasers operating in the low-frequency fluctuation regime[J]. Atomic, Molecular, and Optical Physics, 1999, 60(1): 667-673.

    Sukow D W, Heil T, Fischer I, et al. Picosecond intensity statistics of semiconductor lasers operating in the low-frequency fluctuation regime[J]. Atomic, Molecular, and Optical Physics, 1999, 60(1): 667-673.

[26] UchidaA. Optical communication with chaotic lasers: applications of nonlinear dynamics and synchronization[M]. Hoboken: John Wiley & Sons, 2012: 156- 157.

    UchidaA. Optical communication with chaotic lasers: applications of nonlinear dynamics and synchronization[M]. Hoboken: John Wiley & Sons, 2012: 156- 157.

吴天安, 张晓旭, 张胜海, 兰淑静. 马赫-曾德尔干涉仪对抑制延时特征的作用机理研究[J]. 中国激光, 2018, 45(5): 0501003. Wu Tianan, Zhang Xiaoxu, Zhang Shenghai, Lan Shujing. Study on the Mechanism of Mach-Zehnder Interferometer for Suppressing the Delay Time Signature[J]. Chinese Journal of Lasers, 2018, 45(5): 0501003.

引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!