An efficient method to fabricate transparent glass ceramic fibers containing in-situ grown Er3+-doped oxide nanoparticles is presented. Characterization of the drawn fibers exhibits low loss (0.4 dB/m) and broadened Er3+ emission spectrum. This attractive method offers new scopes for fiber amplifiers
Abstract: Developing of new rare-earth (RE)-doped optical fibres for power amplifiers and lasers req...
International audienceThe success of optical fibers based on silica glass are many: transmission fib...
International audienceThe fabrication of Er-doped ZrO2-based nanocrystalline phase-separated silica ...
An efficient method to fabricate transparent glass ceramic fibers containing in-situ grown Er3+-dope...
International audienceRare earth (RE) doped silica-based optical fibres with transparent glass ceram...
International audienceRare earth (RE) doped silica-based optical fibers with transparent glass ceram...
International audienceA new route was recently proposed to modify some spectroscopic properties of r...
International audienceRare earth (RE) doped silica-based optical fibers with transparent glass ceram...
Abstract: An efficient method to fabricate transparent glass ceramic fibers containing in-situ grown...
International audienceA fiber made by Furnace CVD was codoped with Erbium and Magnesium using a Flas...
International audienceRare earth (RE) doped silica-based optical fibres with transparent glass ceram...
International audienceDevelopment of new luminescent ion (LI) –doped optical fibre devices require m...
Optical fibers are the basis for applications that have grown considerably in recent years (telecomm...
Erbium doped materials are of great interest ill optical telecommunications due to the Er(3+) intra-...
Fibre lasers and inherently rare-earth-doped optical fibers nowadays pass through a new period of th...
Abstract: Developing of new rare-earth (RE)-doped optical fibres for power amplifiers and lasers req...
International audienceThe success of optical fibers based on silica glass are many: transmission fib...
International audienceThe fabrication of Er-doped ZrO2-based nanocrystalline phase-separated silica ...
An efficient method to fabricate transparent glass ceramic fibers containing in-situ grown Er3+-dope...
International audienceRare earth (RE) doped silica-based optical fibres with transparent glass ceram...
International audienceRare earth (RE) doped silica-based optical fibers with transparent glass ceram...
International audienceA new route was recently proposed to modify some spectroscopic properties of r...
International audienceRare earth (RE) doped silica-based optical fibers with transparent glass ceram...
Abstract: An efficient method to fabricate transparent glass ceramic fibers containing in-situ grown...
International audienceA fiber made by Furnace CVD was codoped with Erbium and Magnesium using a Flas...
International audienceRare earth (RE) doped silica-based optical fibres with transparent glass ceram...
International audienceDevelopment of new luminescent ion (LI) –doped optical fibre devices require m...
Optical fibers are the basis for applications that have grown considerably in recent years (telecomm...
Erbium doped materials are of great interest ill optical telecommunications due to the Er(3+) intra-...
Fibre lasers and inherently rare-earth-doped optical fibers nowadays pass through a new period of th...
Abstract: Developing of new rare-earth (RE)-doped optical fibres for power amplifiers and lasers req...
International audienceThe success of optical fibers based on silica glass are many: transmission fib...
International audienceThe fabrication of Er-doped ZrO2-based nanocrystalline phase-separated silica ...