The possibility to control the room temperature Er3+ photoluminescence efficiency in silica is investigated in terms of the damage produced in Er-doped silica by implantations at different fluences with Xe or Au ions. These implantations are tailored to reproduce the same level of damage in Er-doped silica. The remarkable differences in terms of the photoluminescence intensity between Xe- and Au-irradiated samples allowed to decouple the detrimental effect of the implantation damage on the photoluminescence from the beneficial broad-band energy transfer process provided by molecule-like Au clusters formed upon thermal annealing. The evolution of the implantation damage is followed by photoluminescence and correlated to the local Er-site by ...
The enhancement of the Er3+ ions photoluminescence (PL) emission at 1.54 \u3bcm in a Si and Er co-im...
The mechanisms of the Er(3+) photoluminescence enhancement induced by ultrasmall Au nanoclusters (ma...
Materials such as Er:glass are still of great interest in optical communication technology for their...
The possibility to control the room temperature Er3+ photoluminescence efficiency in silica is inves...
The possibility to control the room temperature Er3+ photoluminescence efficiency in silica is inves...
The possibility to control the room temperature Er3+ photoluminescence efficiency in silica is inves...
We report on the room temperature photoluminescence characterization in the visible and near-infrare...
We report on the room temperature photoluminescence characterization in the visible and near-infrare...
We present recent results on the occurrence of an Er fluorescence sensitization induced by ultra-sma...
The sensitization mechanism of Er3+ ions by sub-nanometric Au_N aggregates formed in silica by seque...
The incorporation of Si-nc in Er doped silica is known to strongly enhance the infrared luminescence...
The Au site in Er + Au-implanted silica has been investigated by X-ray absorption spectroscopy, afte...
The Er site in Er + Au-implanted silica has been investigated by x-ray absorption spectroscopy, in p...
The enhancement of the Er3+ ions photoluminescence (PL) emission at 1.54 \u3bcm in a Si and Er co-im...
The mechanisms of the Er(3+) photoluminescence enhancement induced by ultrasmall Au nanoclusters (ma...
Materials such as Er:glass are still of great interest in optical communication technology for their...
The possibility to control the room temperature Er3+ photoluminescence efficiency in silica is inves...
The possibility to control the room temperature Er3+ photoluminescence efficiency in silica is inves...
The possibility to control the room temperature Er3+ photoluminescence efficiency in silica is inves...
We report on the room temperature photoluminescence characterization in the visible and near-infrare...
We report on the room temperature photoluminescence characterization in the visible and near-infrare...
We present recent results on the occurrence of an Er fluorescence sensitization induced by ultra-sma...
The sensitization mechanism of Er3+ ions by sub-nanometric Au_N aggregates formed in silica by seque...
The incorporation of Si-nc in Er doped silica is known to strongly enhance the infrared luminescence...
The Au site in Er + Au-implanted silica has been investigated by X-ray absorption spectroscopy, afte...
The Er site in Er + Au-implanted silica has been investigated by x-ray absorption spectroscopy, in p...
The enhancement of the Er3+ ions photoluminescence (PL) emission at 1.54 \u3bcm in a Si and Er co-im...
The mechanisms of the Er(3+) photoluminescence enhancement induced by ultrasmall Au nanoclusters (ma...
Materials such as Er:glass are still of great interest in optical communication technology for their...