Chromatic Dispersion Compensation Using Photonic Crystal Fibers with Hexagonal Distribution

<p>In this paper we show various configurations of photonic crystal fiber with hexagonal holes distribution for compensation of chromatic dispersion in optical communications links. The vectorial finite element method with scattering boundary condition was used for the analysis of the fibers....

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Main Authors: Erick E. Reyes-Vera, Nelson D. Gomez-Cardona
Format: Article
Language:English
Published: Instituto Tecnológico Metropolitano 2013-11-01
Series:TecnoLógicas
Subjects:
Online Access:http://itmojs.itm.edu.co/index.php/tecnologicas/article/view/499
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author Erick E. Reyes-Vera
Nelson D. Gomez-Cardona
author_facet Erick E. Reyes-Vera
Nelson D. Gomez-Cardona
author_sort Erick E. Reyes-Vera
collection DOAJ
description <p>In this paper we show various configurations of photonic crystal fiber with hexagonal holes distribution for compensation of chromatic dispersion in optical communications links. The vectorial finite element method with scattering boundary condition was used for the analysis of the fibers. From these results it was estimated variation of the dispersion and the dispersion slope with respect to change in the diameter of the holes in the microstructure. With the above was possible to obtain values of dispersion in the C and L bands of telecommunications close to -850 ps / nm * km, with confinement losses 10-3 dB / km</p>
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spelling doaj.art-1020841835254a9faa949a3dadc13cff2022-12-22T03:00:37ZengInstituto Tecnológico MetropolitanoTecnoLógicas0123-77992256-53372013-11-0100543553438Chromatic Dispersion Compensation Using Photonic Crystal Fibers with Hexagonal DistributionErick E. Reyes-Vera0Nelson D. Gomez-Cardona1Departamento de electrónica y telecomunicaciones, Facultad de ingenierías, Instituto Tecnológico Metropolitano, MedellínDepartamento de electrónica y telecomunicaciones, Facultad de ingenierías, Instituto Tecnológico Metropolitano, Medellín<p>In this paper we show various configurations of photonic crystal fiber with hexagonal holes distribution for compensation of chromatic dispersion in optical communications links. The vectorial finite element method with scattering boundary condition was used for the analysis of the fibers. From these results it was estimated variation of the dispersion and the dispersion slope with respect to change in the diameter of the holes in the microstructure. With the above was possible to obtain values of dispersion in the C and L bands of telecommunications close to -850 ps / nm * km, with confinement losses 10-3 dB / km</p>http://itmojs.itm.edu.co/index.php/tecnologicas/article/view/499Dispersión cromáticafibra de cristal fotónicotelecomunicacionesmétodo de los elementos finitos.
spellingShingle Erick E. Reyes-Vera
Nelson D. Gomez-Cardona
Chromatic Dispersion Compensation Using Photonic Crystal Fibers with Hexagonal Distribution
TecnoLógicas
Dispersión cromática
fibra de cristal fotónico
telecomunicaciones
método de los elementos finitos.
title Chromatic Dispersion Compensation Using Photonic Crystal Fibers with Hexagonal Distribution
title_full Chromatic Dispersion Compensation Using Photonic Crystal Fibers with Hexagonal Distribution
title_fullStr Chromatic Dispersion Compensation Using Photonic Crystal Fibers with Hexagonal Distribution
title_full_unstemmed Chromatic Dispersion Compensation Using Photonic Crystal Fibers with Hexagonal Distribution
title_short Chromatic Dispersion Compensation Using Photonic Crystal Fibers with Hexagonal Distribution
title_sort chromatic dispersion compensation using photonic crystal fibers with hexagonal distribution
topic Dispersión cromática
fibra de cristal fotónico
telecomunicaciones
método de los elementos finitos.
url http://itmojs.itm.edu.co/index.php/tecnologicas/article/view/499
work_keys_str_mv AT erickereyesvera chromaticdispersioncompensationusingphotoniccrystalfiberswithhexagonaldistribution
AT nelsondgomezcardona chromaticdispersioncompensationusingphotoniccrystalfiberswithhexagonaldistribution