International audienceWe report a spectroscopic study about the energy transfer mechanism among silicon nanoparticles (Si-np), both amorphous and crystalline, and Er ions in a silicon dioxide matrix. From infrared spectroscopic analysis, we have determined that the physics of the transfer mechanism does not depend on the Si-np nature, finding a fast (く200 ns) energy transfer in both cases, while the amorphous nanoclusters reveal a larger transfer efficiency than the nanocrystals. Moreover, the detailed spectroscopic results in the visible range here reported are essential to understand the physics behind the sensitization effect, whose knowledge assumes a crucial role to enhance the transfer rate and possibly employing the material in optic...
Trivalent erbium ions (Er3+) have played an important role in the development of optical communicati...
Erbium doped waveguide amplifiers can be used in optical integrated circuits to compensate for signa...
International audienceThe energy transfer process between amorphous silicon nanoparticles and erbium...
International audienceWe report a spectroscopic study about the energy transfer mechanism among sili...
We report a spectroscopic study about the energy transfer mechanism among silicon nanoparticles (Si-...
International audienceWe report on the energy-transfer mechanism between amorphous Si nanoclusters a...
We report on the energy-transfer mechanism between amorphous Si nanoclusters and erbium ions in a Si...
The sensitizing action of amorphous silicon nanoclusters on erbium ions in thin silica films has bee...
The mechanism of energy transfer from silicon nanocrystals (Si-nc's) to erbium (Er) ions is studied ...
We present a high-resolution photoluminescence study of Er-doped SiO2 sensitized with Si nanocrystal...
In this work we present the state of the art of our work to obtain an infrared optical amplifier in ...
In the past few years the incorporation of Si nanocrystals in Er doped silica was found to strongly ...
Silicon nanoclusters exhibit novel and interesting optical and electrical properties that are not ob...
Silicon nanoclusters (Si-nc) can be efficient sensitisers of surrounding Er3+ ions, making Er-doped ...
Trivalent erbium ions (Er3+) have played an important role in the development of optical communicati...
Erbium doped waveguide amplifiers can be used in optical integrated circuits to compensate for signa...
International audienceThe energy transfer process between amorphous silicon nanoparticles and erbium...
International audienceWe report a spectroscopic study about the energy transfer mechanism among sili...
We report a spectroscopic study about the energy transfer mechanism among silicon nanoparticles (Si-...
International audienceWe report on the energy-transfer mechanism between amorphous Si nanoclusters a...
We report on the energy-transfer mechanism between amorphous Si nanoclusters and erbium ions in a Si...
The sensitizing action of amorphous silicon nanoclusters on erbium ions in thin silica films has bee...
The mechanism of energy transfer from silicon nanocrystals (Si-nc's) to erbium (Er) ions is studied ...
We present a high-resolution photoluminescence study of Er-doped SiO2 sensitized with Si nanocrystal...
In this work we present the state of the art of our work to obtain an infrared optical amplifier in ...
In the past few years the incorporation of Si nanocrystals in Er doped silica was found to strongly ...
Silicon nanoclusters exhibit novel and interesting optical and electrical properties that are not ob...
Silicon nanoclusters (Si-nc) can be efficient sensitisers of surrounding Er3+ ions, making Er-doped ...
Trivalent erbium ions (Er3+) have played an important role in the development of optical communicati...
Erbium doped waveguide amplifiers can be used in optical integrated circuits to compensate for signa...
International audienceThe energy transfer process between amorphous silicon nanoparticles and erbium...