The development of efficient luminescent systems, such as microcavities, solid-state lasers, integrated optical amplifiers, and optical sensors is the main topic in glass photonics. The building blocks of these systems are glass-ceramics activated by rare-earth ions because they exhibit specific morphologic, structural, and spectroscopic properties. Among various materials that could be used as nanocrystals to be imbedded in a silica matrix, tin dioxide presents some interesting peculiarities, e.g., the presence of tin dioxide nanocrystals allows an increase in both solubility and emission of rare-earth ions. Here, we focus our attention on Er3+—doped silica—tin dioxide photonic glass-ceramics fabricated by a sol-gel route. Alth...
Er-doped tin–silicate glass–ceramic composites were synthesized from Si, Er and Sn molecular precurs...
Since the pioneering work of Tick, Borrelli, Cornelius, and Newhouse on transparent glass ceramics p...
International audienceThe development of optically confined structure is a major topic in both basic...
The development of efficient luminescent systems, such as microcavities, solid-state lasers, integra...
The development of efficient luminescent systems, such as microcavities, solid-state lasers, integra...
International audienceThis work focuses on the fabrication processes and photonic assessment of SiO2...
Summary form only given. In this work, due to the challenge for improving the efficiency of photonic...
For integrated photonics, waveguide structures based on rare-earth-activated glasses are potential c...
SnO2-based glass-ceramics activated by rare earth ions have been extensively investigated because of...
International audienceA new class of glass-ceramic nanocomposite systems with a uniform distribution...
SnO2-based glass-ceramics activated by rare earth ions have been extensively investigated because of...
Looking at the literature of the last years is evident that glass-based rare-earth-activated optical...
The obtention of efficient and compact light sources based on silica doped with rare earth (RE) ions...
Looking at state of the art of optical devices, it is evident that glass-based rare-earth-activated ...
Er-doped tin–silicate glass–ceramic composites were synthesized from Si, Er and Sn molecular precurs...
Since the pioneering work of Tick, Borrelli, Cornelius, and Newhouse on transparent glass ceramics p...
International audienceThe development of optically confined structure is a major topic in both basic...
The development of efficient luminescent systems, such as microcavities, solid-state lasers, integra...
The development of efficient luminescent systems, such as microcavities, solid-state lasers, integra...
International audienceThis work focuses on the fabrication processes and photonic assessment of SiO2...
Summary form only given. In this work, due to the challenge for improving the efficiency of photonic...
For integrated photonics, waveguide structures based on rare-earth-activated glasses are potential c...
SnO2-based glass-ceramics activated by rare earth ions have been extensively investigated because of...
International audienceA new class of glass-ceramic nanocomposite systems with a uniform distribution...
SnO2-based glass-ceramics activated by rare earth ions have been extensively investigated because of...
Looking at the literature of the last years is evident that glass-based rare-earth-activated optical...
The obtention of efficient and compact light sources based on silica doped with rare earth (RE) ions...
Looking at state of the art of optical devices, it is evident that glass-based rare-earth-activated ...
Er-doped tin–silicate glass–ceramic composites were synthesized from Si, Er and Sn molecular precurs...
Since the pioneering work of Tick, Borrelli, Cornelius, and Newhouse on transparent glass ceramics p...
International audienceThe development of optically confined structure is a major topic in both basic...