Title :
Design of single mode photonic crystal fibers with low-loss and flattened dispersion at 1.55μm wavelength
Author :
Pourmahyabadi, M. ; Nejad, Sh Mohammad
Author_Institution :
Coll. of Electr. Eng., Iran Univ. of Sci. & Technol., Tehran
Abstract :
In this article, perfectly matched layer (PML) for the boundary treatment and an efficient compact two dimensional finite-difference time-domain (2-D FDTD) method were combined to model photonic crystal fibers (PCF). For photonic crystal fibers, if we assume that the propagation constant along the propagation direction is fixed, three-dimensional hybrid guided modes can be calculated by using only a two-dimensional mesh. An index-guiding PCF with an array of air holes surrounding the silica core region has special characteristics compared with conventional single-mode fibers (SMFs). Using this model, the fundamental characteristics of single mode photonic crystal fibers (SMPCFs) such as gain, confinement loss and chromatic dispersion are numerically investigated. Also the analysis of some different PCFs, revealed that low loss and flattened chromatic dispersion can be obtained by varying the hole diameter of each air-hole ring along the radius.
Keywords :
finite difference time-domain analysis; holey fibres; optical fibre dispersion; optical fibre losses; photonic crystals; 2-D FDTD; air holes; confinement loss; finite-difference time-domain method; flattened chromatic dispersion; index-guiding PCF; low-loss PCF; perfectly matched layer; silica core; single mode photonic crystal fiber design; wavelength 1.55 mum; Chromatic dispersion; Finite difference methods; Optical fiber losses; Optical losses; Perfectly matched layers; Photonic crystal fibers; Propagation constant; Silicon compounds; Time domain analysis; Two dimensional displays; bending loss; dispersion; finite difference time domain; loss; photonic crystal fiber;
Conference_Titel :
High Capacity Optical Networks and Enabling Technologies, 2007. HONET 2007. International Symposium on
Conference_Location :
Dubai
Print_ISBN :
978-1-4244-1828-2
Electronic_ISBN :
978-1-4244-1829-9
DOI :
10.1109/HONET.2007.4600282