半导体光子学与技术, 2007, 13 (1): 63, 网络出版: 2011-08-18  

Novel Scheme of All-optical AND Gate Based on Fabry-Perot Semiconductor Optical Amplifier

Novel Scheme of All-optical AND Gate Based on Fabry-Perot Semiconductor Optical Amplifier
作者单位
Key Laboratory of Broadband Fiber Transmission and Communication Networks, University of Electronic Science and Technology of China, Chengdu 610054, CHN
摘要
Abstract
A novel scheme of all-optical AND gate based on a Fabry-Perot semiconductor optical amplifier (FP-SOA) is proposed and its feasibility is verified by simulation. Using this scheme, all-optical AND gate can be realized with the extinction ratio of 10 dB. The influence of pulse interval and pulse width on the extinction ratio is also investigated.
参考文献

[1] Saruwatori M. All-optical signal processing in ultrahigh-speed optical transmission[J]. IEEE Communications Magazine, 1994, 32(9): 98-105.

[2] Uchiyama K, Morioka T. All-optical signal processing for 160 Gbit/s/channel OTDM/WDM systems[J]. Optical Fiber Communication Conference and Exhibit, 2001, 4: ThH221-ThH223.

[3] Tajima K, Nakamura S, Ueno Y. Ultrafast all-optical signal processing with symmetric Mach-Zehnder type all-optical switches[J]. Optical and quantum electronics, 2001, 33: 72107210, 875-897.

[4] Houbavlis T, Zoiros K E, Kalyvas M, et al. All-optical signal processing and applications within the esprit project DO/spl I.bar/ALL[J]. Journal of Lightwave Technology, 2005, 23(2): 781-801.

[5] LI Zhi-hong, LI Gui-fang. Ultrahigh-speed reconfigurable logic gates based on four-wave mixing in a semiconductor optical amplifier[J]. IEEE Photonics Technology Letters, 2006, 18(12): 1 341-1 343.

[6] Bogoni A, Poti L, Proietti R, et al. Regenerative and reconfigurable all-optical logic gates for ultra-fast applications[J]. Electronics Letters, 2005, 41(7): 435-436.

[7] Li Z, Liu Y, Zhang S, et al. All-optical logic gates using semiconductor optical amplifier assisted by optical filter[J]. Electronics Letters, 2005, 41(25): 1 397-1 399.

[8] Berrettini G, Simi A, Malacarne A, et al. Ultrafast integrable and reconfigurable XNOR, AND, NOR, and NOT photonic logic gate[J]. IEEE Photonics Technology Letters, 2006, 18(8): 917-919.

[9] Stubkjaer K E. Semiconductor optical amplifier-based all-optical gates for high-speed optical processing[J]. Journal of Quantum Electronics, IEEE, 2000, 6(6): 1 428-1 435.

[10] Mikroulis S, Simos H, Roditi E, et al. 402gb/s NRZ and RZ operation of an all-optical AND logic gate based on a passive InGaAsP/InP microring resonator[J]. Journal of Lightwave Technology, 2006, 24(3): 1 159-1 164.

[11] Ibrahim T A, Grover R, Kuo L C, et al. All-optical AND/NAND logic gates using semiconductor microresonators[J]. IEEE Photonics Technology Letters, 2003, 15(10): 1 422-1 424.

[12] Soto H, Diaz C A, Topomondzo J, et al. All-optical AND gate implementation using cross-polarization modulation in a semiconductor optical amplifier[J]. IEEE Photonics Technology Letters, 2002, 14(4): 498-500.

[13] Ibrahim T A, Grover R, Kuo L-C, et al. Photonic AND/NAND logic gates using semiconductor microresonators[A]. Lasers and Electro-Optics Society from the 16th Annual Meeting of the IEEE[C]. 2003, 1: 283-284.

[14] WANG Jian, YE Pei-da, ZHANG Min, et al. Simple AND gate implementation for optical packet switching networks [J]. Communication Technology Proceedings, 2003, 1: 590-592.

[15] Bintjas C, Kalyvas M, Theophilopoulos G, et al. 20 Gb/s all-optical XOR with UNI gate[J]. IEEE Photonics Technology Letters, 2000, 12(7): 834-836.

[16] Poustie A J, Blow K J, Kelly A E. All-optical full adder with bit-differential delay[J]. Optical Communication, 1998, 156(11): 22-26.

[17] ZHANG Xin-liang, SUN Jun-qiang, LIU De-ming. Theoretical and experimental investigation on all-optical AND gate with cascaded single-port-coupled SOAs[J]. International Society for Optical Engineering Proceedings Series, 2005, 5 624: 459-466.

[18] Connelly M J. Wideband semiconductor optical amplifier steady-state numerical model[J]. IEEE Journal of Quantum Electronics, 2001, 37: 439-447.

ZHANG Wei, QIU Kun, LING Yun, PANG Ying. Novel Scheme of All-optical AND Gate Based on Fabry-Perot Semiconductor Optical Amplifier[J]. 半导体光子学与技术, 2007, 13(1): 63. ZHANG Wei, QIU Kun, LING Yun, PANG Ying. Novel Scheme of All-optical AND Gate Based on Fabry-Perot Semiconductor Optical Amplifier[J]. Semiconductor Photonics and Technology, 2007, 13(1): 63.

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