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Final conference of the COST Action 299 "Optical Fibers for New Challenges Facing the Information Society", Cluj-Napoca : Roumanie (2010)
Chalcogenide microstructured optical fibers : from linear to nonlinear properties
Gilles Renversez ( ) 1, Laurent Brilland 2, Frédéric Désévédavy 3, Quentin Coulombier 3, Johann Troles 3, Mohammed El-Amraoui 4, Frédéric Smektala 4, Julien Fatome 4, Patrick Houizot 3, Thierry Chartier 5, Thanh Nam Nguyen 5, M. Szpulak 6
programme européen COST Action 299 "Optical Fibers for New Challenges Facing the Information Society" Collaboration(s)
(15/03/2010)

In this talk, we review the linear properties of chalcogenide microstructured optical fibers (MOFs) of several types. We mainly focus our talk on mid-infrared applications of such fibers. We start with the general properties of solid core MOFs made of these high index glasses and compare them with the ones of silica. Then, we give some details concerning a solid core MOF made of TAS glass. Next, we describe the first guiding suspended chalcogenide MOF and explain how it was designed for supercontinuum generation in the mid-infrared. Both linear and nonlinear properties of As2S3 suspended core MOFs are also numerically studied. In the next part, We describe the design of the first chalcogenide hollow core photonic crystal fiber made to guide light around 9.3 µm. We describe how it was designed and the effect of the core size on the fundamental mode properties including loss and field map shape. During this talk, we also give and comment a detailed comparison of the figures of merit of highly nonlinear chalcogenide MOFs.
1 :  Institut FRESNEL (IF)
CNRS : UMR6133 – Université de Provence - Aix-Marseille I – Université Paul Cézanne - Aix-Marseille III – Ecole Centrale de Marseille
2 :  Plate-Forme d'Etudes et de Recherche sur les Fibres Optiques Spéciales (PERFOS)
association PERFOS
3 :  Equipe "Verres et Ceramiques"
Université de Rennes 1
4 :  Laboratoire Interdisciplinaire Carnot de Bourgogne (ICB)
CNRS : UMR6303 – Université de Bourgogne
5 :  Fonctions Optiques pour les Technologies de l'informatiON (FOTON)
CNRS : UMR6082 – Université de Rennes 1 – Institut National des Sciences Appliquées (INSA) - Rennes – Ecole Nationale Supérieure des Sciences Appliquées et de Technologie (ENSSAT) – Institut Mines-Télécom – Télécom Bretagne – PRES Université Européenne de Bretagne [UEB]
6 :  Institute of Physics
Wroclaw University of Technology
CLARTE
SLCO
Physique/Physique/Optique
fibres optiques microstructurées – verres de chalcogénures – propriétés linéaires – propriétés nonlinéaires – supercontinuum – bandes interdites photoniques – coeur creux – pertes – moyen infrarouge – dispersion chromatique – coeur suspendu