Study of Bandgap on Plastic Photonic Crystal Fibers

被引:0
|
作者
Yi, Yang [1 ]
Ning, Zhang [1 ]
机构
[1] Beijing Univ Chem Technol, Coll Informat Sci & Technol Engn, Beijing 100029, Peoples R China
关键词
plastic photonic crystal fiber; photonic bandgap; Finite-Difference Time-Domain Method;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
n this paper the principle of light guide and characteristics of plastic photonic bandgap-photonic crystal fibers is introduced. In order to analyze the influence of bandgap properties of plastic PCF on various parameters in plastic photonic crystal fibers, the fullwave modules of the RsoftCAD is used to simulate and compute the plastic PCF of different parameters. According to the principle of Finite-Difference Time-Domain (FDTD), the bandgap characteristics of Hexagonal rings configurations of photonic crystal fibers is analyzed. The variation rules of bandgap properties with both arrangement and size of air holes and so on have been given. Through multi-grouped comparing the cladding structure of plastic PCF to provide the theoretical basis of fabrication and study of actual plastic photonic bandgap-photonic crystal Fibers.
引用
收藏
页码:655 / 659
页数:5
相关论文
共 50 条
  • [31] Photonic bandgap fibers with high birefringence
    Saitoh, K
    Koshiba, M
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2002, 14 (09) : 1291 - 1293
  • [32] Photonic bandgap fibers: Theory and experiments
    Bjarklev, A
    Broeng, J
    Barkou, SE
    LEOS 2000 - IEEE ANNUAL MEETING CONFERENCE PROCEEDINGS, VOLS. 1 & 2, 2000, : 336 - 337
  • [33] Ultrahigh Temperature Sensitivity Using Photonic Bandgap Effect in Liquid-Filled Photonic Crystal Fibers
    Cheng, Lan
    Wu, Jian-jun
    Hu, Xiong-wei
    Peng, Jing-gang
    Yang, Lu-yun
    Dai, Neng-li
    Li, Jin-yan
    IEEE PHOTONICS JOURNAL, 2017, 9 (03):
  • [34] The Second Order Guided Modes Based on Photonic Bandgap Effects in Air/Glass Photonic Crystal Fibers
    Yao Lei
    Lou Shu-Qin
    Jian Shui-Sheng
    CHINESE PHYSICS LETTERS, 2009, 26 (12)
  • [35] Extending Bandgap of Air-core Photonic Bandgap fibers
    Dong, Liang
    Thomas, Brian K.
    Suzuki, Shigeru
    Fu, Libin
    2ND WORKSHOP ON SPECIALTY OPTICAL FIBERS AND THEIR APPLICATIONS WSOF-2, 2010, 7839
  • [36] Hybrid photonic bandgap effect in twisted hollow-core photonic bandgap fibers
    Zhu, Yunhao
    Li, Wei
    Gao, Fuyu
    Xu, Xiaobin
    Song, Ningfang
    OPTICS LETTERS, 2022, 47 (23) : 6161 - 6164
  • [37] Highly birefringent terahertz polarization maintaining plastic photonic crystal fibers
    Cho, M.
    Kim, J.
    Park, H.
    Han, Y.
    Moon, K.
    Jung, E.
    Han, H.
    OPTICS EXPRESS, 2008, 16 (01): : 7 - 12
  • [38] Wavelength conversion of slowly varying signals: An implementation of liquid crystal photonic bandgap fibers
    Alkeskjold, TT
    PHOTONICS SPECTRA, 2005, 39 (03) : 97 - +
  • [39] Measurement and numerical simulation of the bandgap in hollow-core photonic crystal-fibers
    Mi Yan
    Hou Lan-Tian
    Zhou Gui-Yao
    Wang Kang
    Chen Chao
    Gao Fei
    Liu Bo-Wen
    Hu Ming-Lie
    ACTA PHYSICA SINICA, 2008, 57 (06) : 3583 - 3587
  • [40] High Thermal and Electrical Tunability of Negative Dielectric Liquid Crystal Photonic Bandgap Fibers
    Wei, Lei
    Scolari, Lara
    Weirich, Johannes
    Aikeskjold, Thomas T.
    Eskildsen, Lars
    Bjarklev, Anders
    2008 CONFERENCE ON LASERS AND ELECTRO-OPTICS & QUANTUM ELECTRONICS AND LASER SCIENCE CONFERENCE, VOLS 1-9, 2008, : 909 - +