• Acta Optica Sinica
  • Vol. 29, Issue 10, 2692 (2009)
Wu Jindong1、2、*, Wu Xingkun1, Lu Weimin2, Wu Haigang2, Zhang Liyong2, and Huang Xiaopeng2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/aos20092910.2692 Cite this Article Set citation alerts
    Wu Jindong, Wu Xingkun, Lu Weimin, Wu Haigang, Zhang Liyong, Huang Xiaopeng. Improved Fiber Design and Fabrication of Non-Zero Dispersion-Shifted Fibers[J]. Acta Optica Sinica, 2009, 29(10): 2692 Copy Citation Text show less
    References

    [1] Zang Qi,Chen Minghua,Shi Ying et al.. Demonstration of 1.6 Tbit/s (40×40 Gbit/s) wavelength division multiplexing 160 km straight line transmission experiments[J]. Chinese J. Laser,2006,33(9):1230-1233

    [2] Belahlou A,Bickham S,Chowdhury D et al.. Fiber design considerations for 40 Gbit/s systems[J]. J. Lightwave Technol.,2002,20:2290-2305

    [3] Sun Xueming,Zhang Huijian,Zuo Meng. Impacts of polarization mode dispersion and nonlinear effect on 40 Gbit/s dense wavelength division multiplexing System[J]. Acta Optica Sinica,2004,24(10):1363-1369

    [4] Ning Tigang,Jian Shuisheng,Fei Li et al.. 4×10 Gbit/s 412 km DWDM dispersion compensation using multiwavelength chirped fiber bragg grating[J]. Acta Optica Sinica,2002,22(7):839-841

    [5] Li Mingjun,Danied A. Optical transmission fiber design evolution[J]. J. Lightwave Technol.,2008,26:1079-1092

    [6] Zhao Wenyu,Zhao Jijun,Ji Yuefeng et al.. Research on the dispersion problem of high-speed fiber communication system and its compensation[J]. Telecommun. Science,2002,06:15-18

    [7] Xie Xingchu,Chen Xue,Zhou Weiqin et al.. Comparison of the DCF dispersion compensation schemes in DWDM system with G.655[J]. Opt. Commun. Technol.,2008,2:25-28

    [8] Xu Wei,Duan Gaoyan,Fang Guangqing et al.. Analysis of polarization mode dispersion compensation performance for different mod ulation formats[J]. Acta Optica Sinica,2008,28(2):226-232

    [9] Qin Xi,Chen Yong,Cao Jihong et al.. Influence of dispersion compensation schemes on phase noise of phase modulation systems[J]. Chinese J. Laser,2007,34(1):62-66

    [10] Chen Xin,Wu Keying,Ma Xiaohong et al.. Signal shaping based on phase pre-modulation in fiber transmission systems[J]. Chinese J. Laser,2007,34(1):72-75

    [11] Li Jinyan,Li Shiyu,Li Haiqing et al.. Design of new S-C-L band single mode fiber[J]. Stusy on Opt. Commun.,2004,122(2):45-47

    [12] Yoshihiro E,Naomi K,Kazumori M et al.. Trade-off of dispersion slope and effective area in ultra low slop NZ-DSF for non-dispersion-compensated WDM metro transmission[C]. OFC/NFOEC,2005,11

    [13] Gong Yandong,Jian Shuisheng. Research on large effective area fiber[J]. Opt. Commun. Techn.,1999,23(2):126-130

    [14] A. Safaai-Jazi,H. T. Hattori,J.A. Baghdadi. Large effective-area fibers[C]. SPIE,1999. Vol.3666:30-39

    [15] Zhang Xiaoping,Tian Xiangqin. Analysis of waveguide dispersion characteristics of WⅠ-and WⅡ-type triple-cladding single-mode fibers[J]. Acta Optica Sinica,2003,23(5):581-586

    [16] Cheng Yu,Zhao Xiujian,Li Shiyu et al.. Optical fiber waveguide for dispersion control[J]. Optics & Optoelectronic Technology,2006,4(5):43-45

    [17] Kato M,Kurokawa K,Miyajima Y. A new design for dispersion shifted fiber with efffective area larger than 100 μm2 and good bending characteristics[C]. OFC,1998,22-27

    [18] Jiang Xiaoqiang,Wang Ruichun. Non-zero dispersion-shifted optical fibers with low nonlinearity for large capacity and long-haul transmission system[J]. Acta Optica Sinica,2004,24(7):893-896

    [19] Zhang Liyong,Wu Xingkun,Yang Rongjin. A differential iteration solution to chromatic dispersion of optical fibers[J]. Acta Photonica Sinica,2007,11:2079-2082

    [20] Chen Genxiang. An Introduction to Lightwave Technology[M]. Beijing:China Railway Publishing House,2000. 70-71

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    Wu Jindong, Wu Xingkun, Lu Weimin, Wu Haigang, Zhang Liyong, Huang Xiaopeng. Improved Fiber Design and Fabrication of Non-Zero Dispersion-Shifted Fibers[J]. Acta Optica Sinica, 2009, 29(10): 2692
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