• Acta Optica Sinica
  • Vol. 31, Issue 6, 606005 (2011)
Wang Hongbo*, Pu Tao, Lu Lin, Fang Tao, and Sun Guodan
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/aos201131.0606005 Cite this Article Set citation alerts
    Wang Hongbo, Pu Tao, Lu Lin, Fang Tao, Sun Guodan. Research on Achieving Arbitrary Phase Shifts in Fiber Bragg Grating by Changing Refractive Index of Fiber Directly[J]. Acta Optica Sinica, 2011, 31(6): 606005 Copy Citation Text show less
    References

    [1] M. Ibsen, M. K. Durkin, M. J. Cole et al.. Sinc-sampled fiber Bragg gratings for identical multiple wavelength operation [J]. IEEE Photon. Technol. Lett., 1998, 10(6): 842~844

    [2] M. Ibsen, M. K. Durkin, R. I. Laming. Chirped moire fiber gratings operating on two-wavelength channels for use as dual-channel dispersion compensators [J]. IEEE Photon. Technol. Lett., 1998, 10(1): 84~86

    [3] X. F. Chen, C. C. Fan, Y. Luo et al.. Novel flat multichannel filter based on strongly chirped sampled fiber Bragg grating [J]. IEEE Photon. Technol. Lett., 2000, 12(11): 1501~1503

    [4] J. T. Kringlebotn, J. L. Archambault, L. Reekie et al.. ErYb-codoped fiber distributed feedback laser [J]. Opt. Lett., 1994, 19(24): 2101~2103

    [5] P. C. Teh, P. Petropoulos, M. Ibsen et al.. Phase encoding and decoding of short pulses at 10 Gb/s using superstructured fiber Bragg gratings [J]. IEEE Photon. Technol. Lett., 2001, 13(2): 154~156

    [6] P. C. Teh, P. Petropoulos, M. Ibsen et al.. A comparative study of the performance of seven and 63-chip optical code-division multiple-access encoders and decoders based on superstructured fiber Bragg gratings [J]. J. Lightwave Technol., 2001, 19(9): 1352~1365

    [7] Lu Lin, Wu Weilei, Fang Tao et al.. 2.5 Gb/s 60 km OCDMA transmission experiment using EPS-SSFBG en/decoder[J]. Chinese J. Lasers, 2008, 35(3): 418~421

    [8] Pu Tao, Wang Rong, Li Yuquan. Non-Gaussian approximation method for phase encoding optical code division multi-access system[J]. Acta Optica Sinica, 2007, 27(1): 10~14

    [9] Yan Meng, Yao Minyu, Zhang Hongming et al.. OCDMA encoding-decoding experiments based on superstructured fiber Bragg grating with equivalent phase shift[J]. Chinese J. Lasers, 2006, 33(2): 221~224

    [10] Fang Tao, Li Yuquan, Wang Rong. Study of pulse width effecton performance of optical code-division-multiple-access en/decoder[J]. Acta Optica Sinica, 2007, 27(11): 1939~1943

    [11] W. H. Loh, F. Q. Zhou, J. J. Pan. Novel designs for sampled grating-based multiplexers demultiplexers [J]. Opt. Lett., 1999, 24(21): 1457~1459

    [12] R. Kashyap, P. F. McKee, D. Armes. UV written reflection grating structures in photosensitive optical fibers using phase-shifted phase-masks [J]. Electron. Lett., 1994, 30(23): 1977~1979

    [13] Cai Lulu, Wu Fei, Wang Yutian. Analysis for the reflective spectrum characteristics of phase-shifted fiber gratings [J]. Chinese J. Lasers, 2009, 36(8): 2070~2075

    [14] W. H. Loh, M. J. Cole, M. N. Zervas et al.. Complex grating structures with uniform phase masks based on the moving fiber-scanning beam technique [J]. Opt. Lett., 1995, 20(20): 2051~2053

    [15] X. Wang, K. Matsushima, K. I. Kitayama et al.. Demonstration of the improvement of apodized 127-chip SSFBG incoherent time-spreading OCDMA network [C]. Optical Fiber Communication (OFC 2004), Los Angeles, CA, Paper MF74

    [16] M. R. Mokhtar, M. Ibsen, P. C. Teh et al.. Reconfigurable multilevel phase-shift keying encoder-decoder for all-optical networks [J]. IEEE Photon. Technol. Lett., 2003, 15(3): 431~433

    [17] Z. Zhang, C. Tian, M. A. F. Roelens et al.. Direct characterization of the spatial effective refractive index profile in Bragg gratings [J]. IEEE Photon. Technol. Lett., 2005, 17(12): 2685~2687

    [18] Zhaowei Zhang, Chun Tian, Mohd R. Mokhtar et al.. Rapidly reconfigurable optical phase encoder-decoders based on fiber Bragg gratings [J]. IEEE Photon. Technol. Lett., 2006, 18(11): 1216~1218

    [19] Zhaowei Zhang, Chun Tian, Periklis Petropoulos et al.. Distributed-phase OCDMA encoder-decoders based on fiber Bragg gratings [J]. IEEE Photon. Technol. Lett., 2007, 19(8): 574~576

    [20] Y. Nasu, S. Yamashita. Multiple-phase-shift superstructure fiber Bragg grating for DWDM systems [J]. Electron. Lett., 2001, 37(24): 1471~1472

    [21] Yusuke Nasu, Shinji Yamashita. Densification of sampled fiber Bragg gratings using multiple-phase-shift (MPS) technique [J]. J. Lightwave Technol., 2005, 23(4): 1808~1817

    CLP Journals

    [1] Zhou Li, Liang Dakai, Zeng Jie, Zhang Xiaoli, Jin Jing. Mechanism and Experimental Research on Performance Degeneratio of Fiber Bragg Grating Affected by Temperature[J]. Chinese Journal of Lasers, 2012, 39(4): 405007

    [2] Sun Guodan, Wang Rong, Pu Tao, Wei Zhihu. Dual-Wavelength Sampled Fiber Bragg Grating by Changing Refractive Index of Fiber[J]. Chinese Journal of Lasers, 2012, 39(4): 405001

    Wang Hongbo, Pu Tao, Lu Lin, Fang Tao, Sun Guodan. Research on Achieving Arbitrary Phase Shifts in Fiber Bragg Grating by Changing Refractive Index of Fiber Directly[J]. Acta Optica Sinica, 2011, 31(6): 606005
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