Dispersion compensation optical fiber modules for 40 Gbps WDM communication systems

Wei Chen1,2, Shiyu Li1, Peixiang Lu2, Dongxiang Wang1, W. Luo1
1State Key Laboratory of Optical Communication Technologies and Networks, Fiberhome Telecommunication Technologies Co. Ltd., Wuhan, China
2Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan, China

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Tài liệu tham khảo

Kim S, Bae J, Lee K, Kim S H, Jeong J M, Lee S B. Tunable dispersion slope compensator using two uniform fiber Bragg gratings mounted on S-shape plate. Optics Express, 2009, 17(6): 4336–4341

Dabarsyah B, Goh C S, Khijwania S K, Set S Y, Katoh K, Kikuchi K. Adjustable group velocity dispersion and dispersion slope compensation devices with wavelength tunability based on enhanced thermal chirping of fiber Bragg gratings. Journal of Lightwave Technology, 2007, 25(9): 2711–2718

Shu X, Turitsyna E, Sugden K, Bennion I. Novel complex gratings with third-order group-delay variations for tunable pure dispersion slope compensation. Optics Express, 2008, 16(16): 12090–12095

Chen W, Li S Y, Lei D Y, Luo W Y, Jiang Z W, Peng J G, Li H Q. Development of wide-band dispersion compensation modules. Study on Optical Communications, 2008, 5(2): 39–41 (in Chinese)

Van Den Borne D, Veljanovski V, De Man E, Gaubatz U, Zuccaro C, Paquet C, Painchaud Y, Jansen S L, Gottwald E, Khoe G D, de Waardt H. Cost-effective 10.7-Gbit/s long-haul transmission using fiber Bragg gratings for in-line dispersion compensation. In: Proceedings of Optical Fiber Communications Conference. 2007, OThS5

Jansen S L, Morita I, Schenk T C W, van den Borne D, Tanaka H. OFDM-A candidate for future long-haul optical transmission systems. In: Proceedings of Optical Fiber Communications Conference. 2008, OMU3

Kwon J, Kim S, Roh S, Lee B. Tunable dispersion slope compensator using a chirped fiber Bragg grating tuned by a fan-shaped thin metallic heat channel. IEEE Photonics Technology Letters, 2006, 18(1): 118–120

Pei L, Ning T, Yan F, Dong X, Tan Z, Liu Y, Jian S. Dispersion compensation of fiber Bragg gratings in 3100 km high speed optical fiber transmission system. Frontiers of Optoelectronics in China, 2009, 2(2): 163–169

Kato T, Hirano M, Tada A, Fukuada K, Fujii T, Ooishi T, Yokoyama Y, Yoshida M, Onishi M. Dispersion flattened transmission line consisting of wide-band non-zero dispersion shifted fiber and dispersion compensating fiber module. Optical Fiber Technology, 2002, 8(3): 231–239

Ania-Castañón J D, Turitsyn S K. Noise and gain optimisation in bidirectionally pumped dispersion compensating amplifier modules. Optics Communications, 2003, 224(1–3): 107–111

Palai P, Thyagarajan K, Pal B P. Erbium-doped dispersion-compensating fiber for simultaneous compensation of loss and dispersion. Optical Fiber Technology, 1997, 3(2): 149–153

Xia L, Li X, Chen X, Xie S. A novel dispersion compensating fiber grating with a large chirp parameter and period sampled distribution. Optics Communications, 2003, 227(4–6): 311–315

Grüner-Nielsen L, Knudsen S N, Edvold B, Veng T, Magnussen D, Larsen C C, Damsgaard H. Dispersion compensating fibers. Optical Fiber Technology, 2000, 6(2): 164–180

Lingle R Jr, Peckham D W, Chang K H, McCurdy A. Single-Mode Fibers for Communications. Specialty Optical Fibers Handbook, Chapter 5, 2007

Palai P, Varshney R K, Thyagarajan K. A dispersion flattening dispersion compensating fiber design for broadband dispersion compensation. Fiber and Integrated Optics, 2001, 20(1): 21–27

Chen W, Li S Y, Lu P X. Dispersion-flattened Bragg photonic crystal fiber for large capacity optical communication system. Frontiers of Optoelectronics in China, 2009, 2(3): 289–292