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hal.structure.identifierTheoretical and Physical Chemistry Institute
dc.contributor.authorDUSSAUZE, Marc
hal.structure.identifierTheoretical and Physical Chemistry Institute
dc.contributor.authorKAMITSOS, Efstratios I.
hal.structure.identifierInstitut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
dc.contributor.authorFARGIN, Evelyne
hal.structure.identifierInstitut des Sciences Moléculaires [ISM]
dc.contributor.authorRODRIGUEZ, Vincent
dc.date.issued2009
dc.identifier.issn0009-2614
dc.description.abstractEnLarge refractive index variations have been recorded by combining micro-infrared reflectance spectroscopy with simulations of interference fringes measured at the anode side of thermally poled sodium-rich boro-phosphate–niobate glasses. The method developed in this work is effective for probing the spatial distribution and depth-profile of refractive index in the non-linear optical layer. It was found that the refractive index decreases and the molar volume increases with thermal poling, leading to a net increase in molecular electronic polarizability in the non-linear optical layer of the poled glass.
dc.language.isoen
dc.publisherElsevier
dc.subject.enPoled glasses
dc.subject.enOxides
dc.subject.enNon-linear optic
dc.title.enRefractive index distribution in the non-linear optical layer of thermally poled oxide glasses
dc.typeArticle de revue
dc.identifier.doi10.1016/j.cplett.2009.01.007
dc.subject.halChimie/Matériaux
bordeaux.journalChemical Physics Letters
bordeaux.page63-66
bordeaux.volume470
bordeaux.issue1-3
bordeaux.peerReviewedoui
hal.identifierhal-00382206
hal.version1
hal.popularnon
hal.audienceInternationale
hal.origin.linkhttps://hal.archives-ouvertes.fr//hal-00382206v1
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