Improved fully vectorial effective index method for photonic crystal fibers: evaluation and enhancement

被引:28
作者
Li, Yanfeng [1 ]
Yao, Yuhong [1 ]
Hu, Minglie [1 ]
Chai, Lu [1 ]
Wang, Chingyue [1 ]
机构
[1] Tianjin Univ, Ultrafast Laser Lab, Coll Precis Instrument & Optoelect Engn, Key Lab Optoelect Informat & Tech Sci, Tianjin 300072, Peoples R China
关键词
D O I
10.1364/AO.47.000399
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In the effective index method, which models photonic crystal fibers by means of a step-index waveguide analogy, two critical parameters are the effective index of the cladding and the effective core radius. It has been shown that the use of an effective core radius as a function of the relative air hole diameter, or also of the relative wavelength, can improve the accuracy of this method. We show, by comparison with a rigorous finite-difference frequency-domain method, that the reported improved fully vectorial effective index methods have commonly adopted a radius of the equivalent circular unit cell, which does not give the best accurate effective cladding index as compared with the use of an equivalent circular unit cell having the same area as the hexagonal unit cell. Furthermore, by defining both the radius of the equivalent circular unit cell and the effective core radius as a function of the relative air hole diameter, and the relative wavelength, we believe that the fully vectorial effective index method can be further enhanced in terms of accuracy of both the effective cladding index and the modal index. (C) 2008 Optical Society of America.
引用
收藏
页码:399 / 406
页数:8
相关论文
共 30 条
[1]   Endlessly single-mode photonic crystal fiber [J].
Birks, TA ;
Knight, JC ;
Russell, PS .
OPTICS LETTERS, 1997, 22 (13) :961-963
[2]  
Birkst T. A., 1999, OFC/IOOC'99. Optical Fiber Communication Conference and the International Conference on Integrated Optics and Optical Fiber Communications (Cat. No.99CH36322), P114, DOI 10.1109/OFC.1999.766012
[3]  
BJARKLEV A, 2003, PHOTONIC CRYSTAL FIB
[4]   Complete analysis of the characteristics of propagation into photonic crystal fibers, by the finite element method [J].
Brechet, F ;
Marcou, J ;
Pagnoux, D ;
Roy, P .
OPTICAL FIBER TECHNOLOGY, 2000, 6 (02) :181-191
[5]   Single-mode single-polarization holey fiber using anisotropic fundamental space-filling mode [J].
Eguchi, Masashi ;
Tsuji, Yasuhide .
OPTICS LETTERS, 2007, 32 (15) :2112-2114
[6]   Photonic crystal fibres [J].
Knight, JC .
NATURE, 2003, 424 (6950) :847-851
[7]   Properties of photonic crystal fiber and the effective index model [J].
Knight, JC ;
Birks, TA ;
Russell, PSJ ;
de Sandro, JP .
JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 1998, 15 (03) :748-752
[8]   Simple evaluation of confinement losses in holey fibers [J].
Koshiba, M ;
Saitoh, K .
OPTICS COMMUNICATIONS, 2005, 253 (1-3) :95-98
[9]   Applicability of classical optical fiber theories to holey fibers [J].
Koshiba, M ;
Saitoh, K .
OPTICS LETTERS, 2004, 29 (15) :1739-1741
[10]   Multipole method for microstructured optical fibers. II. Implementation and results [J].
Kuhlmey, BT ;
White, TP ;
Renversez, G ;
Maystre, D ;
Botten, LC ;
de Sterke, CM ;
McPhedran, RC .
JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2002, 19 (10) :2331-2340