Dynamics of the high lying excited states of Tm3+ ions in YAG
Identifieur interne : 002C25 ( Main/Exploration ); précédent : 002C24; suivant : 002C26Dynamics of the high lying excited states of Tm3+ ions in YAG
Auteurs : S. Guy [France] ; M. Malinowski [Pologne] ; Z. Frukacz [Pologne] ; M. F. Joubert [France] ; B. Jacquier [France]Source :
- Journal of Luminescence [ 0022-2313 ] ; 1996.
Descripteurs français
- Pascal (Inist)
English descriptors
- KwdEn :
- Activator concentration, Aluminium oxides, Concentration dependence, Concentration increases, Concentration quenching, Cross relaxation, Doped materials, Doped sample, Energy gaps, Energy level structure, Energy transfer, Energy transfers, Excitation, Excited states, Experimental points, Experimental study, Fluorescence, Fluorescence decay curves, Fluorescence dynamics, Fluorescence lifetimes, Fluorescence quenching, Fluorescence spectra, Hirayama model, Laser, Luminescence, Luminescence decay, Metastable, Metastable level, Perfect coincidence, Photon, Photon avalanche process, Phys, Quenching, Room temperature, Selective excitation, Spectral range, Stark components, State emissions, Thulium additions, Time dependence, Various temperatures, YAG, Yttrium oxides.
- Teeft :
- Activator concentration, Concentration dependence, Concentration increases, Concentration quenching, Doped sample, Energy gaps, Energy level structure, Energy transfer, Energy transfers, Excitation, Experimental points, Fluorescence decay curves, Fluorescence dynamics, Fluorescence lifetimes, Fluorescence quenching, Fluorescence spectra, Hirayama model, Laser, Luminescence, Metastable, Metastable level, Perfect coincidence, Photon, Photon avalanche process, Phys, Quenching, Room temperature, Selective excitation, Spectral range, Stark components, State emissions, Time dependence, Various temperatures.
Abstract
Abstract: The near UV, visible and near IR emissions in YAG:Tm3+ are investigated after selective one photon pumping of the 1I6, 1D2 or 1G4 manifold. Reduction of the fluorescence lifetimes as well as non-exponentiality of the decays at short times, which appear with increasing activator concentration, are indications of the cross-relaxation quenching of these excited state emissions.
Url:
DOI: 10.1016/0022-2313(96)00010-5
Affiliations:
- France, Pologne
- Auvergne-Rhône-Alpes, Rhône-Alpes
- Lyon, Villeurbanne
- Université Claude Bernard Lyon 1
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Le document en format XML
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<profileDesc><textClass><keywords scheme="KwdEn" xml:lang="en"><term>Activator concentration</term>
<term>Aluminium oxides</term>
<term>Concentration dependence</term>
<term>Concentration increases</term>
<term>Concentration quenching</term>
<term>Cross relaxation</term>
<term>Doped materials</term>
<term>Doped sample</term>
<term>Energy gaps</term>
<term>Energy level structure</term>
<term>Energy transfer</term>
<term>Energy transfers</term>
<term>Excitation</term>
<term>Excited states</term>
<term>Experimental points</term>
<term>Experimental study</term>
<term>Fluorescence</term>
<term>Fluorescence decay curves</term>
<term>Fluorescence dynamics</term>
<term>Fluorescence lifetimes</term>
<term>Fluorescence quenching</term>
<term>Fluorescence spectra</term>
<term>Hirayama model</term>
<term>Laser</term>
<term>Luminescence</term>
<term>Luminescence decay</term>
<term>Metastable</term>
<term>Metastable level</term>
<term>Perfect coincidence</term>
<term>Photon</term>
<term>Photon avalanche process</term>
<term>Phys</term>
<term>Quenching</term>
<term>Room temperature</term>
<term>Selective excitation</term>
<term>Spectral range</term>
<term>Stark components</term>
<term>State emissions</term>
<term>Thulium additions</term>
<term>Time dependence</term>
<term>Various temperatures</term>
<term>YAG</term>
<term>Yttrium oxides</term>
</keywords>
<keywords scheme="Pascal" xml:lang="fr"><term>7855H</term>
<term>Addition thulium</term>
<term>Al O Y</term>
<term>Aluminium oxyde</term>
<term>Déclin luminescence</term>
<term>Etat excité</term>
<term>Etude expérimentale</term>
<term>Fluorescence</term>
<term>Grenat aluminium yttrium</term>
<term>Matériau dopé</term>
<term>Relaxation croisée</term>
<term>Transfert énergie</term>
<term>Y3Al5O12:Tm</term>
<term>Yttrium oxyde</term>
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<keywords scheme="Teeft" xml:lang="en"><term>Activator concentration</term>
<term>Concentration dependence</term>
<term>Concentration increases</term>
<term>Concentration quenching</term>
<term>Doped sample</term>
<term>Energy gaps</term>
<term>Energy level structure</term>
<term>Energy transfer</term>
<term>Energy transfers</term>
<term>Excitation</term>
<term>Experimental points</term>
<term>Fluorescence decay curves</term>
<term>Fluorescence dynamics</term>
<term>Fluorescence lifetimes</term>
<term>Fluorescence quenching</term>
<term>Fluorescence spectra</term>
<term>Hirayama model</term>
<term>Laser</term>
<term>Luminescence</term>
<term>Metastable</term>
<term>Metastable level</term>
<term>Perfect coincidence</term>
<term>Photon</term>
<term>Photon avalanche process</term>
<term>Phys</term>
<term>Quenching</term>
<term>Room temperature</term>
<term>Selective excitation</term>
<term>Spectral range</term>
<term>Stark components</term>
<term>State emissions</term>
<term>Time dependence</term>
<term>Various temperatures</term>
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<front><div type="abstract" xml:lang="en">Abstract: The near UV, visible and near IR emissions in YAG:Tm3+ are investigated after selective one photon pumping of the 1I6, 1D2 or 1G4 manifold. Reduction of the fluorescence lifetimes as well as non-exponentiality of the decays at short times, which appear with increasing activator concentration, are indications of the cross-relaxation quenching of these excited state emissions.</div>
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