Search results for "Chalcogénure"

showing 10 items of 12 documents

Caractérisation d'une fibre optique ultra non-linéaire en verre de chalcogénure

2009

session orale 3 « Effets nonlinéaires » [Ma1.4], http://optiquelille2009.univ-lille1.fr/; National audience; Nous présentons les résultats expérimentaux concernant la caractérisation d'une fibre optique microstructurée en verre de chalcogénure de composition AsSe. Ces mesures concernent l'atténuation, la dispersion, l'aire effective et le coefficient non-linéaire du troisième ordre. Cette fibre présente un fort potentiel pour des applications non-linéaires avec un coefficient non-linéaire Kerr de 15 400 W-1m-1.

[SPI.OPTI] Engineering Sciences [physics]/Optics / PhotonicOptique non-linéaire[SPI.OPTI]Engineering Sciences [physics]/Optics / Photonicverre de chalcogénure[ SPI.OPTI ] Engineering Sciences [physics]/Optics / PhotonicFibre optique microstructurée
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Small-core chalcogenide microstructured fibers for the infrared.

2008

International audience; We report several small-core chalcogenide microstructured fibers fabricated by the "Stack & Draw" technique from Ge(15)Sb(20)S(65) glass with regular profiles. Mode field diameters and losses have been measured at 1.55 microm. For one of the presented fibers, the pitch is 2.5 microm, three times smaller than that already obtained in our previous work, and the corresponding mode field diameter is now as small as 3.5 microm. This fiber, obtained using a two step "Stack & Draw" technique, is single-mode at 1.55 microm from a practical point of view. We also report the first measurement of the attenuation between 1 and 3.5 microm of a chalcogenide microstructured fiber. …

Optical fiberMaterials scienceChalcogenideMaterials Science (miscellaneous)02 engineering and technology01 natural sciencesIndustrial and Manufacturing Engineeringlaw.invention010309 opticsMode field diameterchemistry.chemical_compoundOpticslawpertes0103 physical sciencesFiberBusiness and International Managementnonlinéaritéfibres optiques microstructurées[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics][ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]business.industryAttenuationMicrostructured optical fiber[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyinfrarougeverres de chalcogénureCore (optical fiber)chemistry[ CHIM.MATE ] Chemical Sciences/Material chemistryfibre monomode0210 nano-technologybusinessPhotonic-crystal fiber
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Supercontinuum generation in chalcogenide: application to gas spectroscopy in atmospheric band III

2023

This thesis work aims to contribute to the development of new fiber sources emitting over a wide range of wavelengths in the IR, in particular to detect greenhouse gases in the mid-infrared range. Our spectroscopy results with nitrous oxide N2O and methane CH4 are obtained in band III. To achieve this, the generation of supercontinuum (SC) covering band III was made possible by using chalcogenide optical fibers, purified and free of highly toxic elements according to REACH regulations, in particular arsenic and antimony. The fibrable vitreous composition belonging to the Ge-Se-Te ternary system fits perfectly into the context of sustainable development, it is the one that has been identifie…

chalcogénureschalcogenideoptical fiberinfrared[CHIM] Chemical Sciencessupercontinuum large bandefibre optiquebroadband supercontinuumcapteur de gazinfrarougegas sensor[PHYS] Physics [physics]
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Supercontinuum generation in chalcogenides : application to gas spectroscopy in atmospheric band III

2023

This thesis work aims to contribute to the development of new fiber sources emitting over a wide range of wavelengths in the IR, in particular to detect greenhouse gases in the mid-infrared range. Our spectroscopy results with nitrous oxide N2O and methane CH4 are obtained in band III. To achieve this, the generation of supercontinuum (SC) covering band III was made possible by using chalcogenide optical fibers, purified and free of highly toxic elements according to REACH regulations, in particular arsenic and antimony. The fibrable vitreous composition belonging to the Ge-Se-Te ternary system fits perfectly into the context of sustainable development, it is the one that has been identifie…

Supercontinuum large bande[CHIM.MATE] Chemical Sciences/Material chemistryOptical fiberBroadband supercontinuumCapteur de gazChalcogenideInfraredGas sensorInfrarougeChalcogénureFibre optique
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Elaboration of multimaterial optical fibers with electro-optical functionalities

2022

The emergence of multimaterials optical fibers is of tremendous technological interest in photonics to combine the remarkable properties of glasses with those of other materials such as metals or polymers in order to form a fully integrated fiber optical system with multiple functionalities. Among these hybrid fibers, the development of fibers combining both optical signal and simultaneous electrical transport function could bring alternative interesting solution in many fields such as telecommunications, medicine or sensing. The drawing of architectures merging electrical and optical features in a unique elongated wave-guiding structure will enable to develop electro-optical functionalitie…

MultimatériauxElectro-Optical properties[CHIM.MATE] Chemical Sciences/Material chemistryOptical fiberTelluriteKerr effectChalcogenidePropriétés électro-OptiquesMultimaterialEffet KerrFibre optiqueChalcogénure
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Mid-infrared supercontinuum generation in chalcogenide and telluride fibers for sensor devices

2019

This thesis reports on the progress made during my PhD concerning supercontinuum generation and its application in two types of materials: chalcogenide and tellurite glasses. Concerning the chalcogenide axis, two new arsenic-free compositions are developed: Ge20Se60Te20 and Ge20Se70Te10. Thermal and optical properties of these two glasses are studied and two types of fibers are manufactured: a step-index fiber and a suspended core fiber. The generation of supercontinuum in these two fibres, pumped by an optical parametric amplifier, gives competitive results compared to the current state of the art of supercontinuum generation in chalcogenide fibres. Supercontinuums widening between 2 and 1…

CapteursTelluriteChalcogénuresTelluritesSensors[CHIM.OTHE] Chemical Sciences/OtherChalcogenideFibres Optiques[CHIM.OTHE]Chemical Sciences/OtherSupercontinuumInfraredInfrarougeOptical Fibers
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chalcogenide materials for nonlinear integreted optics in mid-infrared

2019

Elaboration and characterization of new compositions of chalcogenide materials exhibiting nonlinear effects for integrated optic applications and fabrication of low-loss waveguides.

Moyen infra-RougeMid-InfraredChalcogénuresPhotoniquePhotonic[SPI.TRON] Engineering Sciences [physics]/Electronics[SPI.TRON]Engineering Sciences [physics]/ElectronicsChalcogenides
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High bit rate optical pulses sources generation and microstructured chalcogenide fibers characterizations

2011

This memory of thesis s' registered voter in the context of the FUTUR project financed by l' ANR and concerning the development of optical functions for the high bit-rate transmissions in the Network heart and carries on very high rates optical fibers sources generation and the optical chalcogenide microstructured fiber characterization. For this purpose, we study the linear and non-linear characteristics of microstructured chalcogenide fibers conceived and realized in various collaborations within the framework of the ANR FUTUR project. For that a great number of characterizations methods were developed giving a comparison between a standard single mode fiber and these microstructured chal…

[PHYS]Physics [physics][ PHYS ] Physics [physics]Effet Non-linéaires -Train à très haut débit -SHG-FROGOptical Fiber Microstructured chalcogenide Optical Fiber Non Linear Effect High bit-rate train SHG-FROG[PHYS] Physics [physics]Fibre optiqueFibre optique chalcogénure microstructurée
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Fourth-order cascaded Raman shift in AsSe chalcogenide suspended-core fiber pumped at 2 μm

2011

International audience; Cascaded Raman wavelength shifting up to the fourth order ranging from 2092 to 2450nm is demonstrated using a nanosecond pump at 1995nm in a low-loss As38Se62 suspended-core microstructured fiber. These four Stokes shifts are obtained with a low peak power of 11W, and only 3W are required to obtain three shifts. The Raman gain coefficient for the fiber is estimated to (1.6 +-0.5)x 10e−11 m/W at 1995nm. The positions and the amplitudes of the Raman peaks are well reproduced by the numerical simulations of the nonlinear propagation.

Materials scienceOptical fibermoyen infrarougeChalcogenide02 engineering and technologyverre de chalcogénurecascades Raman01 natural scienceslaw.invention010309 opticssymbols.namesakechemistry.chemical_compoundOpticslawfibre optique microstucturée0103 physical sciencesFiber[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics][ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]business.industryoptique nonlinéaireNonlinear optics[CHIM.MATE]Chemical Sciences/Material chemistryNanosecond021001 nanoscience & nanotechnologyAtomic and Molecular Physics and OpticsCore (optical fiber)coeur suspenduchemistry[ CHIM.MATE ] Chemical Sciences/Material chemistrysymbols190.5650 060.4370 060.2390.0210 nano-technologyRaman spectroscopybusinessRaman scattering
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High bit rate optical pulses sources generation and microstructured chalcogenide fibers characterizations

2011

This memory of thesis s' registered voter in the context of the FUTUR project financed by l'ANR and concerning the development of optical finctions fot the high bit-rate transmissions in the Network heart and carries on very high rates optical fibers sources generation and the optical chalcogenide microstructured fiber charaterization. For this purpose, we study the linear and non-linear characteristics of microstructured chalcogenide fibers conceived and realized in various collaborations within the framework of the ANR FUTUR project. For that a great number of characterizations methods were developed giving a comparison between a standard single mode fiber and there microstructured chalco…

[SPI.OTHER]Engineering Sciences [physics]/Other[ SPI.OTHER ] Engineering Sciences [physics]/Other[SPI.OTHER] Engineering Sciences [physics]/OtherNon Linear Effect[ PHYS.COND.CM-GEN ] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]Optical FiberHigh bit-rate trainTrain à très haut débitFibre optiqueMicrostructured chalcogenide Optical Fiber[PHYS.COND.CM-GEN] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]High Linear Effect[PHYS.COND.CM-GEN]Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]Effet Non-linéairesSHG-FROGFibre optique chalcogénure microstructurée
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