Title
Novel Square Photonic Crystal Fibers With Ultra-Flattened Chromatic Dispersion And Low Confinement Losses
Abstract
This study proposes a novel structure of index-guiding square photonic crystal fibers (SPCF) having simultaneously ultra-flattened chromatic dispersion characteristics and low confinement losses in a wide wavelength range. The finite difference method (FDM) with anisotropic perfectly matched layers (PMLs) is used to analyze the various properties of square PCF. The findings reveal that it is possible to design five-ring PCFs with a flattened negative chromatic dispersion of 0-1.5 ps/(nm.km) in a wavelength range of 1.27 mu m to 1.7 mu m and a flattened chromatic dispersion of 0 +/- 1.15 ps/(nm.km) in a wavelength range of 1.25 mu m to 1.61 mu m. Simultaneously it also exhibited that the confinement losses are less than 10(-9) dB/m and 10(-10) dB/m in the wavelength range of 1.25 mu m to 1.7 mu m.
Year
DOI
Venue
2007
10.1093/ietele/e90-c.3.607
IEICE TRANSACTIONS ON ELECTRONICS
Keywords
Field
DocType
photonic crystal fibers, finite difference method, nonlinear optics, chromatic dispersion, confinement loss
Perfectly matched layer,Dispersion (optics),Optical fiber,Photonic crystal,Dispersion relation,Photonic-crystal fiber,Optics,Electronic engineering,Engineering,Nonlinear optics,Wavelength
Journal
Volume
Issue
ISSN
E90C
3
1745-1353
Citations 
PageRank 
References 
0
0.34
0
Authors
4
Name
Order
Citations
PageRank
Feroza Begum101.35
Yoshinori Namihira234.37
S. M. Abdur Razzak301.35
Nianyu Zou423.55