Pauline Perrin, Luiz Fernando Dos Santos, Alexandre Hebbrecht, Diana Serrano, Alexey Tiranov, Jocelyn Achard, Alexandre Tallaire, Rogéria Rocha Gonçalves, Philippe Goldner
nanoparticles over a wide concentration range (0.5-17%), using both direct and up-conversion excitation. Luminescence decays of green, red, and near-infrared transitions were measured and analyzed using a single rate equation model incorporating radiative and non-radiative processes, energy transfer mechanisms, and defect-related quenching. Using specific measurements to determine each model parameter in a reliable way, we successfully reproduce experimental trends across most concentrations and excitation paths. This unified approach thus provides a sound and predictive framework for modeling energy transfer in rare-earth-doped materials and offers valuable insights for optimizing photoluminescent properties in nanostructured systems.