Publication | Closed Access
Optical transitions and upconversion luminescence of Er3+/Yb3+-codoped halide modified tellurite glasses
82
Citations
40
References
2004
Year
Optical MaterialsEngineeringLuminescent GlassOptical GlassLaser ApplicationsGlass MaterialChemistryStrong Upconversion SignalOptical PropertiesFunctional GlassUpconversion MechanismsMaterials SciencePhotonicsConventional MeltingOptoelectronic MaterialsUpconversion LuminescenceEr3+/yb3+-codoped HalideApplied PhysicsGlass PhotonicsOptical TransitionsOptoelectronics
Er 3+ -doped halide modified tellurite glasses were synthesized by conventional melting and quenching method. The Judd–Ofelt analysis was performed on the absorption spectra and the transition probabilities, excited state lifetimes, and the branching ratios were calculated and discussed. The intense infrared and visible fluorescence spectra under 980 nm excitation were obtained. Strong upconversion signal was observed at pumping power as low as 30 mW in the glasses with halide ions. The upconversion mechanisms and power dependent intensities were discussed, which showed two-photon process are involved for the green and red emissions. The decay times of the emitting states and the corresponding quantum efficiency were determined and explained.
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