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Thermally induced threefold upconversion emission enhancement in nonresonant excited Er3+/Yb3+-codoped chalcogenide glass
90
Citations
18
References
1999
Year
Materials SciencePhotonicsOptical MaterialsPhonon Occupation NumberUpconversion Efficiency EnhancementEngineeringOptical PropertiesSpectroscopyNatural SciencesApplied PhysicsTimes ThreeOptical GlassGlass PhotonicsUpconversion LuminescenceLuminescent GlassChemistry
Thermally induced threefold infrared-to-visible upconversion emission enhancement in Er3+/Yb3+-codoped Ga2S3:La2O3 chalcogenide glasses excited at 1.064 μm is reported. The times three upconversion efficiency enhancement was achieved by heating the sample in the temperature range of 23–155 °C, and is assigned to the temperature-dependent multiphonon-assisted anti-Stokes sideband excitation process of the ytterbium sensitizer. A theoretical analysis based upon rate equations considering the sensitizer absorption cross section as a function of the phonon occupation number in the host material exhibited very good agreement with experimental data.
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