Dispersion-compensating photonic crystal fibers with special characteristics

被引:3
|
作者
Zhang, Yejin [1 ]
Yang, Sigang [2 ]
Xie, Shizhong [2 ]
Zheng, Wanghua [1 ]
Chen Lianghui [1 ]
机构
[1] Chinese Acad Sci, Inst Semicond, Nano Optoelect Lab, Beijing 100083, Peoples R China
[2] Tsinghua Univ, Dept Elect Engn, Beijing 100084, Peoples R China
关键词
photonic crystal fiber; dispersion compensating; negative dispersion;
D O I
10.1002/mop.23306
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Based on the modified dual core structure, three kinds of special photonic crystal fibers are presented, which are extremely large negative dispersion, super-broad bond, and large area made field dispersion-compensating photonic crystal fibers (DCPCF). For extremely large negative dispersion DCPCF, the peak of negative dispersion reaches -5.9 x 10(4) ps/(mn km). Super-broad bond DCPCF has broadband large negative dispersion and the dispersion value varies linearly from -380 ps/(nm km) to -420 ps/(nm km) in the C band. The designed large area made field DCPCF has a peak dispersion of -1203 ps/(nm km) with the inner core mode area of 47 mu m(2) and outer core mode area of 835 mu m(2). Furthermore, for the large area mode field DCPCF, the experimental result is also obtained. (C) 2008 Wiley Periodicals, Inc.
引用
收藏
页码:1073 / 1078
页数:6
相关论文
共 50 条
  • [21] Design of Broadband Dispersion Compensating Photonic Crystal Fibers for High Speed Transmission Systemsc
    Begum, F.
    Namihira, Y.
    Kaijage, S. F.
    Razzak, S. M. A.
    Hai, N. H.
    Kinjo, T.
    Miyagi, K.
    Zou, N.
    OFC: 2009 CONFERENCE ON OPTICAL FIBER COMMUNICATION, VOLS 1-5, 2009, : 13 - +
  • [22] Numerical comparison between conventional dispersion compensating fibers and photonic crystal fibers as lumped Raman amplifiers
    Castellani, C. E. S.
    Cani, S. P. N.
    Segatto, M. E. V.
    Pontes, M. J.
    Romero, M. A.
    OPTICS EXPRESS, 2009, 17 (25): : 23169 - 23180
  • [23] Broadband dispersion compensating photonic crystal fiber
    Lucki, Michal
    Zeleny, Richard
    PHOTONICS, DEVICES, AND SYSTEMS V, 2011, 8306
  • [24] Dispersion characteristics of all-glass photonic crystal fibers
    Gowre, Sanjaykumar
    Mahapatra, Sudipta
    Varshney, S. K.
    Sahu, P. K.
    OPTIK, 2013, 124 (18): : 3730 - 3733
  • [25] Dispersion characteristics of hollow-core photonic crystal fibers
    Khromova I.A.
    Melnikov L.A.
    Physics of Particles and Nuclei Letters, 2007, 4 (2) : 176 - 179
  • [26] Optimal packaging of dispersion-compensating fibers for matched nonlinear compensation and reduced optical noise
    Wei, HQ
    Plant, DV
    OPTICS LETTERS, 2005, 30 (18) : 2369 - 2371
  • [27] Simple semi-empirical model for chromatic dispersion estimation of dispersion compensating photonic-crystal fibers
    Burdin, Vladimir A.
    Delmukhametov, Oleg R.
    OPTICAL TECHNOLOGIES FOR TELECOMMUNICATIONS 2011, 2012, 8410
  • [28] Synthesis of dispersion-compensating triangular lattice index-guiding photonic crystal fibres using the directed tabu search method
    Karim, F.
    OPTO-ELECTRONICS REVIEW, 2017, 25 (01) : 41 - 45
  • [29] Long dispersion-compensating grating reduces dispersion in fiberoptic networks
    不详
    LASER FOCUS WORLD, 1998, 34 (03): : 11 - 11
  • [30] An All-Solid Dispersion-Compensating Photonic Crystal Fiber Based on Mode Coupling Mechanism in Dual-Concentric Core
    Liu, Zhaolun
    Zhang, Chunlan
    Qu, Yuwei
    INTERNATIONAL JOURNAL OF OPTICS, 2020, 2020