This work shows that it is possible to fabricate phosphate-based planar wave-guides activated by rare earth ions both by sol-gel and RF-sputtering techniques. The objective of this thesis has been to evaluate various methodologies for fab-rication Phosphorous-based planar waveguides. In this context sol-gel and RF-sputtering techniques for planar waveguides fabrication has been investigated. RF-process has been optimized. In case of sol-gel technique a further thermo-dynamical study is required. Each of technique has drawbacks, in sol-gel method the principal question is related to the kinetics of the reaction, since it is too fast, to better control of the reaction rates, and better adjustment of the technological films fabrication, which ...
This work presents studies of GeO2-PbO thin films deposited by RF Sputtering for fabrication of rib-...
International audienceIn this work, a sol-gel route was used to prepare Y0.9Er0.1Al3(BO3)4 glassy th...
Sol-gel is one of the possible production techniques of silica-on-silicon integrated optical devices...
The phosphosilicate for planar waveguides fabrication by using sol-gel, and particularly erbium-dope...
Erbium-activated silica-based planar waveguides were prepared by three different technological route...
A new Er(3+)/Yb(3+) co-doped phosphate glass has been prepared, which exhibits good chemical durabil...
0.4 Er3+-doped 90.7 SiO2 – 4.4 P2O5 – 2.3 HfO2 – 1.7 Al2O3 – 0.7 Na2O planar waveguide was fabricate...
Silica-based sol-gel waveguides activated by Er3+ ions are attractive materials for integrated optic...
Er(3+) doped (100-x)SiO(2)-xZrO(2) planar waveguides were prepared by the sol-gel route, with x rang...
Er-doped silica-based waveguides prepared by different techniques: RF-sputtering, sol-gel and ion-ex...
The sol-gel method combined with a spin-coating technique has been successfully applied for the prep...
In this work, a sol-gel route was used to prepare Y(0.9)Er(0.1)Al(3)(BO(3))(4) glassy thin films by ...
Sol gel – derived SiO2-HfO2 planar waveguides of different molar composition and activated by differ...
conference 7366 « Photonic Materials, Devices, and Applications », Session: 3B « Nanophotonics II » ...
This paper deals with glass-based photonic structures, used to control and modify the optical and sp...
This work presents studies of GeO2-PbO thin films deposited by RF Sputtering for fabrication of rib-...
International audienceIn this work, a sol-gel route was used to prepare Y0.9Er0.1Al3(BO3)4 glassy th...
Sol-gel is one of the possible production techniques of silica-on-silicon integrated optical devices...
The phosphosilicate for planar waveguides fabrication by using sol-gel, and particularly erbium-dope...
Erbium-activated silica-based planar waveguides were prepared by three different technological route...
A new Er(3+)/Yb(3+) co-doped phosphate glass has been prepared, which exhibits good chemical durabil...
0.4 Er3+-doped 90.7 SiO2 – 4.4 P2O5 – 2.3 HfO2 – 1.7 Al2O3 – 0.7 Na2O planar waveguide was fabricate...
Silica-based sol-gel waveguides activated by Er3+ ions are attractive materials for integrated optic...
Er(3+) doped (100-x)SiO(2)-xZrO(2) planar waveguides were prepared by the sol-gel route, with x rang...
Er-doped silica-based waveguides prepared by different techniques: RF-sputtering, sol-gel and ion-ex...
The sol-gel method combined with a spin-coating technique has been successfully applied for the prep...
In this work, a sol-gel route was used to prepare Y(0.9)Er(0.1)Al(3)(BO(3))(4) glassy thin films by ...
Sol gel – derived SiO2-HfO2 planar waveguides of different molar composition and activated by differ...
conference 7366 « Photonic Materials, Devices, and Applications », Session: 3B « Nanophotonics II » ...
This paper deals with glass-based photonic structures, used to control and modify the optical and sp...
This work presents studies of GeO2-PbO thin films deposited by RF Sputtering for fabrication of rib-...
International audienceIn this work, a sol-gel route was used to prepare Y0.9Er0.1Al3(BO3)4 glassy th...
Sol-gel is one of the possible production techniques of silica-on-silicon integrated optical devices...