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基于SOA交叉相位调制的全光8-3线编码器的设计 被引量:1

Design of All-optical 8-3 Line Encoder Based on Cross Phase Modulation of SOA
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摘要 利用半导体光放大器(SOA)的交叉相位调制效应(XPM),首先设计实现了一种全光逻辑OR门,进而利用所设计的全光OR门的级联,设计出了一种全光8-3线编码器。利用OptiSystem光子模拟软件,验证了所设计的全光逻辑OR门的逻辑运算功能和全光8-3线编码器的编码功能,OR运算结果的Q值可达33.94,全光8-3线编码器输出结果的Q值可达39.87。设计的全光8-3线编码器,不需要使用滤波器,所用元器件较少,实现成本低廉,在未来全光信息处理方面具有良好的应用前景。 The all-optical information processing technology is the key technology in optical communication system.The all-optical 8-3 line encoder is the key device in all-optical signal processing.The all-optical 8-3 line encoder could be realized based on the cascade of OR gates.Using the cross phase modulation effect(XPM)based on semiconductor optical amplifier(SOA),an all-optical OR gate was firstly designed and implemented,and then the all-optical 8-3 line encoder was designed.The feasibility of the designed all-optical OR gate and all-optical 8-3 line encoder was verified by using the OptiSystem photon simulation software.The all-optical 8-3 line encoder could be realized without the filter,so the design cost could be reduced,showing good application prospects in the future all-optical information processing.
作者 霍恺丽 刘开贤 陈新桥 狄晗 HUO Kaili;LIU Kaixian;CHEN Xinqiao;DI Han(School of Date Science and Intelligent Media,Communication University of China,Beijing 100024,CHN;School of Information Engineering,Communication University of China,Beijing 100024,CHN)
出处 《光电子技术》 CAS 2021年第3期192-198,共7页 Optoelectronic Technology
基金 国家重点研发计划项目(2018YFB1404101)。
关键词 半导体光放大器(SOA) 马赫-曾德尔干涉仪(MZI) 交叉相位调制(XPM) 全光8-3线编码器 全光逻辑或门(OR) semiconductor optical amplifier(SOA) Mach-Zehnder interferometer(MZI) cross-phase modulation(XPM) all-optical 8-3 line encoder all-optical logic OR gate
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  • 1BRAUN R P, GROSSKOPF G, ROHDE D, et al. Optical millimetre-wave generation and transmission experiments for mobile 60 GHz band communications [J]. Electronics Letters(S0013-5194), 1996, 32(7): 626-628.
  • 2YAO Jian-ping. Microwave Photonics [J]. Journal of Lightwave Technology(S0733-8724), 2009, 27(3): 314-335.
  • 3GOLDBERG L, TAYLOR H F, WELLER J F, et al. Microwave signal generation with injection-locked laser diodes [J]. Electronics Letters(S0013-5194), 1983, 19(13): 491-493.
  • 4JUNG T, SHEN Ji-lin, TONG D T K, et al. CW injection locking of a mode-locked semiconductor laser as a local oscillator comb for channelizing broad-band RF signals [J]. IEEE Transactions on Microwave Theory and Techniques(S0018-9480), 1999, 47(7): 1225-1233.
  • 5RAMOS R T, SEEDS A J. Fast heterodyne optical phase-lock loop using double quantum well laser diodes [J]. Electronics Letters(S0013-5194), 1992, 28(1): 82-83.
  • 6RIDEOUT H R, SEREGELYI J S, PAQUET S, et al. Discriminator-Aided Optical Phase-Lock Loop Incorporating a Frequency Down-Conversion Module [J]. IEEE Photonics Technology Letters(S1041-1135), 2006, 18(22): 2344-2346.
  • 7O'REILLY J J, LANE P M, HEIDEMANN R, et al. Optical generation of very narrow linewidth miUimetre wave signals [J]. Electronics Letters(S0013-5194), 1992, 28(25): 2309-2311.
  • 8O'REILLY J J, LANE P M. Fibre-supported optical generation and delivery of 60 GHz signals [J]. Electronics Letters(S0013-5194), 1994, 30(16): 1329-1330.
  • 9QI Guo-hua, YAO Jian-ping, SEREGELYI J, et al. Optical generation and distribution of continuously tunable millimeter-wave signals using an optical phase modulator [J]. Journal of Light-wave Technology(S0733-8724), 2005, 23(9): 2687-2695.
  • 10QI Guo-hua, YAO Jian-ping, SEREGELYI J, et al. Generation and distribution of a wide-band continuously tunable millimeter-wave signal with an optical external modulation technique [J]. IEEE Transactions on Microwave Theory and Techniques(S0018-9480), 2005, 53(10): 3090-3097.

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