An All-Solid Dispersion-Compensating Photonic Crystal Fiber Based on Mode Coupling Mechanism in Dual-Concentric Core

被引:1
作者
Liu, Zhaolun [1 ,2 ]
Zhang, Chunlan [1 ]
Qu, Yuwei [2 ,3 ]
机构
[1] Yanshan Univ, Sch Informat Sci & Engn, Qinhuangdao 066004, Hebei, Peoples R China
[2] Yanshan Univ, Key Lab Special Opt Fiber & Fiber Sensor Hebei, Qinhuangdao 066004, Hebei, Peoples R China
[3] Beijing Univ Posts & Telecommun, State Key Lab Informat Photon & Opt Commun, Beijing 100876, Peoples R China
基金
中国国家自然科学基金;
关键词
LARGE NEGATIVE DISPERSION; DESIGN; BIREFRINGENCE;
D O I
10.1155/2020/4718054
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
An all-solid dispersion-compensating photonic crystal fiber based on mode coupling mechanism in dual-concentric core has been proposed. The mode coupling characteristics, dispersion, confinement loss of the fiber, and the influence on dispersion of some structure parameters are simulated by full-vector finite element method. By using the relationship between phase matching wavelengths and coupling strength with the change of fiber microstructure parameters, an all-solid dual-concentric-core dispersion-compensating photonic crystal fiber is presented. The structure parameters on dispersion characteristic are investigated. The results demonstrate that the proposed fiber has a large negative dispersion value 8465 ps/(nm center dot km) at 1550 nm. The effective mode area and the splicing loss to the standard single mode fiber are 12.8 mu m(2) and 1.89 dB at 1550 nm, respectively. At 1550 nm, the confinement loss is less than 1 x 10(-3) dB/km and the bending loss with 2 cm bending diameter is less than 1 x 10(-2) dB/km.
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页数:9
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共 24 条
  • [1] Numerical analysis and optimization of a dual-concentric-core photonic crystal fiber for broadband dispersion compensation
    Aliramezani, M.
    Nejad, Sh Mohammad
    [J]. OPTICS AND LASER TECHNOLOGY, 2010, 42 (08) : 1209 - 1217
  • [2] Highly birefringent, highly negative dispersion compensating photonic crystal fiber
    Bala, Animesh
    Chowdhury, Kanan Roy
    Mia, Md Borhan
    Faisal, Mohammad
    [J]. APPLIED OPTICS, 2017, 56 (25) : 7256 - 7261
  • [3] Birks T. A., 1997, IEEE PHOTONIC TECH L, V11, P674
  • [4] Designing of highly birefringence, dispersion shifted decagonal photonic crystal fiber with low confinement loss
    De, Moutusi
    Gangwar, Rahul Kumar
    Singh, Vinod Kumar
    [J]. PHOTONICS AND NANOSTRUCTURES-FUNDAMENTALS AND APPLICATIONS, 2017, 26 : 15 - 23
  • [5] Design of dispersion-compensating fibers based on a dual-concentric-core photonic crystal fiber
    Gérôme, F
    Auguste, JL
    Blondy, JM
    [J]. OPTICS LETTERS, 2004, 29 (23) : 2725 - 2727
  • [6] Dispersion compensation properties of dual-concentric core photonic crystal fibers
    Han, Lihong
    Liu, Liming
    Yu, Zhongyuan
    Zhao, Huijie
    Song, Xin
    Mu, Jinhong
    Wu, Xiu
    Long, Junjie
    Liu, Xi
    [J]. CHINESE OPTICS LETTERS, 2014, 12 (01)
  • [7] Theoretical investigation of a dispersion compensating photonic crystal fiber with ultra-high dispersion coefficient and extremely low confinement loss
    Hsu, Jui-Ming
    Zheng, Wen-Hao
    Lee, Cheng-Ling
    Horng, Jing-Shyang
    [J]. PHOTONICS AND NANOSTRUCTURES-FUNDAMENTALS AND APPLICATIONS, 2015, 16 : 1 - 8
  • [8] Dispersion ultrastrong compensating fiber based on a liquid-filled hybrid structure of dual-concentric core and depressed-clad photonic crystal fiber
    Hsu, Jui-Ming
    Ye, Guang-Sheng
    [J]. JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2012, 29 (08) : 2021 - 2028
  • [9] Large-mode-area single-polarization single-mode photonic crystal fiber: design and analysis
    Kumar, Ajeet
    Saini, Than Singh
    Naik, Kishor Dinkar
    Sinha, Ravindra Kumar
    [J]. APPLIED OPTICS, 2016, 55 (19) : 4995 - 5000
  • [10] Design of a pentagonal photonic crystal fiber with high birefringence and large flattened negative dispersion
    Li, Xuyou
    Liu, Pan
    Xu, Zhenlong
    Zhang, Zhiyong
    [J]. APPLIED OPTICS, 2015, 54 (24) : 7350 - 7357