DocumentCode
844048
Title
An efficient approach for calculating the dispersions of photonic-crystal fibers: design of the nearly zero ultra-flattened dispersion
Author
Wu, Tzong-Lin ; Chao, Chia-Hsin
Author_Institution
Dept. of Electr. of Eng., Nat. Sun Yat-Sen Univ., Kaohsiung, Taiwan
Volume
23
Issue
6
fYear
2005
fDate
6/1/2005 12:00:00 AM
Firstpage
2055
Lastpage
2061
Abstract
A novel and efficient approach is proposed to calculate the dispersions of the guided modes of the photonic-crystal fibers (PCFs). Based on the vector boundary-element method (VBEM), the surface integral equations for the first and second derivatives of the propagation constants with respect to the wavelength are explicitly derived. Compared with the three-point finite-difference approach, which needs to solve and search three effective indexes near the interested wavelength, this approach can determine the dispersions of the PCFs by only solving one effective index at this wavelength based on the derived formulations. This novel approach saves over 60% computing time without losing the accuracy. Based on this approach, a novel four-ring PCF is designed by optimizing only three geometrical parameters to achieve the nearly zero ultra-flattened dispersion property. Compared with previously presented dispersion-flattened PCFs, the design procedure for the four-ring structure could be more efficient and easier because relatively lesser parameters need to be optimized.
Keywords
boundary-elements methods; integral equations; optical design techniques; optical fibre dispersion; photonic crystals; effective index; fiber design; fiber dispersion; four-ring structure; geometrical parameters; guided modes; nearly ultraflattened dispersion; photonic-crystal fibers; propagation constants; surface integral equations; vector boundary-element method; Chaos; Councils; Design optimization; Dispersion; Finite difference methods; Finite element methods; Integral equations; Photonic crystal fibers; Propagation constant; Surface waves; Chromatic dispersion; photonic-crystal fibers (PCFs); vector boundary method; zero dispersion;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2005.849929
Filename
1440512
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