The Journal of Chemical Physics · 1999 · 94 citations · 18 references
Luminescence DecayEngineeringMultipole InteractionLocalized Excited StateLuminescent GlassYokota–tanimoto ModelElectronic Excited StateLuminescence PropertyFluorozincate GlassesPhysicsEnergy TransferAtomic PhysicsWeak InteractionPhysical ChemistryTb3+ IonsQuantum ChemistryExcited State PropertyNatural SciencesApplied Physics
The dynamics of luminescence decay is analyzed within the general scenario of randomly distributed ions with whatever multipole interaction, taking into account energy transfer and migration processes among them. By applying Padé approximants to the Allinger and Blumen expression for the excited state population, a simple expression has been obtained which can be easily fitted to experimental data. This expression can be considered a generalization of the dipole–dipole Yokota–Tanimoto equation. On the other hand, the decay curves from the D35 level of the Tb3+ ions in fluorozincate glasses have been measured for different Tb3+ concentrations. The results are analyzed in the framework of the proposed expression.
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The mechanism of cross-relaxation in Y3Al5O12: Tb3+
D. J. Robbins, B. Cockayne, B. Lent et al. · Solid State Communications · 1976 · 191 citations