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hal.structure.identifierLaboratoire de Chimie Physique - Matière et Rayonnement [LCPMR]
dc.contributor.authorJONNARD, P.
hal.structure.identifierLaboratoire de Chimie Physique - Matière et Rayonnement [LCPMR]
dc.contributor.authorDUFOUR, G.
hal.structure.identifierCentre d'études scientifiques et techniques d'Aquitaine [CESTA]
dc.contributor.authorRULLIER, J.-L.
hal.structure.identifierCentre d'études scientifiques et techniques d'Aquitaine [CESTA]
dc.contributor.authorMORREEUW, J.-P.
hal.structure.identifierCentre d'Etudes Nucléaires de Bordeaux Gradignan [CENBG]
dc.contributor.authorDONOHUE, J.T.
dc.date.issued2004
dc.identifier.issn0003-6951
dc.description.abstractEnIn order to understand the damage mechanisms inside the optics of the high power laser facilities, a model sample has been prepared by introducing gold nanoparticles into a silica film. The mean diameter of the gold clusters is 2.5 nm. Different parts of the sample were irradiated at wavelength 355 nm and fluences up to 1 J/cm2. By looking with x-ray photoelectron spectroscopy at the intensity of the Au 4f peak relative to that of the Si 2p peak, a surface Au density enrichment is observed. We interpret this as indicating that the gold atoms migrate toward the surface upon the laser irradiation.
dc.language.isoen
dc.publisherAmerican Institute of Physics
dc.subject.engold
dc.subject.enoptical films
dc.subject.ensilicon compounds
dc.subject.enthin films
dc.subject.ennanoparticles
dc.subject.enmetal clusters
dc.subject.enlaser beam effects
dc.subject.enX-ray photoelectron spectra
dc.subject.endensity
dc.title.enSurface density enhancement of gold in silica film under laser irradiation at 355 nm
dc.typeArticle de revue
dc.identifier.doi10.1063/1.1777391
dc.subject.halPhysique [physics]/Physique [physics]/Physique des plasmas [physics.plasm-ph]
bordeaux.journalApplied Physics Letters
bordeaux.page591-593
bordeaux.volume85
bordeaux.peerReviewedoui
hal.identifierin2p3-00102652
hal.version1
hal.popularnon
hal.audienceNon spécifiée
hal.origin.linkhttps://hal.archives-ouvertes.fr//in2p3-00102652v1
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