Sol-gel route is employed to prepare three nanostructured systems, namely core-shell Er3+-activated silica particles, Er3+-activated silica inverse opal; and spherical microresonators coated by Er 3+-activated silica-hafnia film. Fabrication protocol, morphology, and spectroscopic assessment are presented. All the structures exhibit high compositional homogeneity leading to a significant 4I13/2 luminescence quantum yield. In the case of inverse opals a quantum efficiency of about 90% was estimated by lifetime measurements. The spherical microresonators was considered for whispering gallery mode analysis showing that the fluorescence spectra are quasi independent on the thermal effect linked to injected power.

Fabrication, Assessment, and Application of Confined Structures in Photonic Glasses

A Chiappini;A Chiasera;M Ferrari;S Pelli;
2009

Abstract

Sol-gel route is employed to prepare three nanostructured systems, namely core-shell Er3+-activated silica particles, Er3+-activated silica inverse opal; and spherical microresonators coated by Er 3+-activated silica-hafnia film. Fabrication protocol, morphology, and spectroscopic assessment are presented. All the structures exhibit high compositional homogeneity leading to a significant 4I13/2 luminescence quantum yield. In the case of inverse opals a quantum efficiency of about 90% was estimated by lifetime measurements. The spherical microresonators was considered for whispering gallery mode analysis showing that the fluorescence spectra are quasi independent on the thermal effect linked to injected power.
2009
Istituto di Fisica Applicata - IFAC
Istituto di fotonica e nanotecnologie - IFN
9781424457465
Silica micro-nano spheres
Microresonators
Inverse Opals
Sol-gel
Quantum efficiency
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/80022
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