Rare-earth-doped optical fibres are widely used in lasers and amplifiers. The incorporation of ytterbium and aluminium oxide in a high doping concentration has led to the fabrication of a multi-mode (MM) optical fibre. Within this research, the design, preparation and calculation for the production of a fibre with a targeted 45 μm core diameter are explored. By Energy Dispersive X-ray (EDX) analysis, the doping concentrations of the elements in the core have been measured as 60.4 at.% Al and 1 at.% Yb. Supporting micrographs are used for confirming the core/cladding ratio. Based on the atomic percentage concentration, the calculated refractive index of the multi-element core has an n = 1.61 and an NA = 0.678. Characterisation of the fibre, ...
A Yb-doped phosphate glass double cladding optical fiber was prepared using a custom designed glass ...
Output power scaling of single mode large mode area (LMA) photonic crystal fiber (PCF) amplifiers ur...
The article brings into focus the present state of technology employing active fibres doped with rar...
Rare-earth-doped optical fibres are widely used in lasers and amplifiers. The incorporation of ytter...
The work presented in this thesis reports on four novel techniques for fabricating speciality silica...
Ytterbium-doped silica optical fibers are widely used for high power laser applications for several ...
In the paper the research on rare-earth doped and co-doped optical fibre conducted in the Laboratory...
We demonstrate an efficient, ytterbium-doped low-NA fiber with core glass containing high levels of ...
Les fibres optiques en silice dopées ytterbium sont couramment utilisées pour des applications laser...
In this paper, we investigate Yb doped Y2O3 (or Y3Al6O12) nanoparticles in a silica rich matrix, as ...
Optical fibres have brought innumerable improvements in technology, not only in data transmission, ...
International audienceLarge-Mode-Area (LMA) fibers are key elements in modern high power fiber laser...
This thesis deals with the fabrication, characterisation, and applications of ytterbium: erbium codo...
Double clad large core Yb(2)O(3) doped fibres with core diameter up to 20 pm have been fabricated by...
We present the characteristics of an ytterbium-doped alumino-silicate fiber, fabricated through vapo...
A Yb-doped phosphate glass double cladding optical fiber was prepared using a custom designed glass ...
Output power scaling of single mode large mode area (LMA) photonic crystal fiber (PCF) amplifiers ur...
The article brings into focus the present state of technology employing active fibres doped with rar...
Rare-earth-doped optical fibres are widely used in lasers and amplifiers. The incorporation of ytter...
The work presented in this thesis reports on four novel techniques for fabricating speciality silica...
Ytterbium-doped silica optical fibers are widely used for high power laser applications for several ...
In the paper the research on rare-earth doped and co-doped optical fibre conducted in the Laboratory...
We demonstrate an efficient, ytterbium-doped low-NA fiber with core glass containing high levels of ...
Les fibres optiques en silice dopées ytterbium sont couramment utilisées pour des applications laser...
In this paper, we investigate Yb doped Y2O3 (or Y3Al6O12) nanoparticles in a silica rich matrix, as ...
Optical fibres have brought innumerable improvements in technology, not only in data transmission, ...
International audienceLarge-Mode-Area (LMA) fibers are key elements in modern high power fiber laser...
This thesis deals with the fabrication, characterisation, and applications of ytterbium: erbium codo...
Double clad large core Yb(2)O(3) doped fibres with core diameter up to 20 pm have been fabricated by...
We present the characteristics of an ytterbium-doped alumino-silicate fiber, fabricated through vapo...
A Yb-doped phosphate glass double cladding optical fiber was prepared using a custom designed glass ...
Output power scaling of single mode large mode area (LMA) photonic crystal fiber (PCF) amplifiers ur...
The article brings into focus the present state of technology employing active fibres doped with rar...