DocumentCode :
817337
Title :
Theoretical and experimental analysis of a chromatic dispersion compensating module using a dual concentric core fiber
Author :
Gérôme, Frédéric ; Auguste, Jean-Louis ; Maury, Julien ; Blondy, Jean-Marc ; Marcou, Jacques
Author_Institution :
Inst. of Res. in Microwave & Opt. Commun., Univ. of Limoges, France
Volume :
24
Issue :
1
fYear :
2006
Firstpage :
442
Lastpage :
448
Abstract :
New designs of optical fibers are widely used in dispersion compensating module (DCM) inserted in optical links to improve the bit rate. Dual concentric core fibers (DCCFs) can exhibit a very large negative dispersion coefficient and a large figure of merit well suited for DCM applications. However, these fibers intrinsically propagate two supermodes. So a selective injection of the mode of the central elementary guide of DCCF can be realized by the input connection with a single-mode fiber to obtain a negative dispersion. In this paper, we demonstrate theoretically and confirm experimentally the impact of this particular injection. The complete association of a DCCF connected on each end with single-mode fibers, corresponding at a DCM, is studied. A new definition of the chromatic dispersion (CD) for a DCM based on the phase delay method is established. The corresponding curve presents two symmetric maxima and becomes at the phase matching wavelength. Experimental verification is presented and the influence of the optogeometrical parameters on the evolution of the CD is also discussed.
Keywords :
compensation; error statistics; optical fibre communication; optical fibre dispersion; optical phase matching; bit rate; chromatic dispersion compensation module; dual concentric core fiber; negative dispersion coefficient; phase delay method; phase matching; supermodes; Bit rate; Chromatic dispersion; Delay; Optical design; Optical fiber communication; Optical fiber dispersion; Optical fiber theory; Optical fibers; Optical propagation; Optical waveguides; Compensation; optical fiber communication; optical fiber dispersion; optical fiber theory;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2005.859848
Filename :
1589076
Link To Document :
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