Titanium (Ti)-in-diffused lithium niobate waveguide mode filters fabricated using laser-induced forward transfer followed by thermal diffusion are presented. The mode control was achieved by adjusting the separation between adjacent Ti segments thus varying the average value of the refractive index along the length of the in-diffused channel waveguides. The fabrication details, loss measurements and near-field optical characterization of the mode filters are presented. Modeling results regarding the device performance are also discussed
Abstract. Permanent refractive-index gratings in waveguide devices are of consid-erable interest for...
1. Fibres with micron-scale structureThe development of core-clad silica glass optical fibers has re...
We report a technique of fabrication of optical waveguides in lithium niobate which relies on our re...
We propose a rapid prototyping method for the fabrication of optical waveguides based on the direct ...
We report on the fabrication and characterization of femtosecond laser micromachined depressed cladd...
Integrated optical devices use light to perform circuit functions. One class of devices using Ti ind...
A tunable guided-wave optical filter that performs spectral slicing at the 1530nm wavelength regime ...
The optical transmission characteristics of dielectric optical waveguides having directional changes...
The design, fabrication, and characterization of active waveguide devices in lithium niobate (LiNbO$...
Optical waveguides in titanium-diffused sapphire are demonstrated, with single mode operation (lambd...
We report the demonstration of waveguide lasers in lithium niobate into which the active element neo...
This thesis describes the work carried out on diffusively doped Tm - and Yb - Ti:LiNbO3 waveguide la...
The subject of this thesis is to study the Laser-Induced Forward Transfer (LIFT) tech-nique using a ...
The profile of titanium (Ti) lines produced by KrF excimer laser direct writing on lithium niobate (...
Ti diffusion into LiNbO3 single crystal was studied as a result of Ruby laser irradiation of a metal...
Abstract. Permanent refractive-index gratings in waveguide devices are of consid-erable interest for...
1. Fibres with micron-scale structureThe development of core-clad silica glass optical fibers has re...
We report a technique of fabrication of optical waveguides in lithium niobate which relies on our re...
We propose a rapid prototyping method for the fabrication of optical waveguides based on the direct ...
We report on the fabrication and characterization of femtosecond laser micromachined depressed cladd...
Integrated optical devices use light to perform circuit functions. One class of devices using Ti ind...
A tunable guided-wave optical filter that performs spectral slicing at the 1530nm wavelength regime ...
The optical transmission characteristics of dielectric optical waveguides having directional changes...
The design, fabrication, and characterization of active waveguide devices in lithium niobate (LiNbO$...
Optical waveguides in titanium-diffused sapphire are demonstrated, with single mode operation (lambd...
We report the demonstration of waveguide lasers in lithium niobate into which the active element neo...
This thesis describes the work carried out on diffusively doped Tm - and Yb - Ti:LiNbO3 waveguide la...
The subject of this thesis is to study the Laser-Induced Forward Transfer (LIFT) tech-nique using a ...
The profile of titanium (Ti) lines produced by KrF excimer laser direct writing on lithium niobate (...
Ti diffusion into LiNbO3 single crystal was studied as a result of Ruby laser irradiation of a metal...
Abstract. Permanent refractive-index gratings in waveguide devices are of consid-erable interest for...
1. Fibres with micron-scale structureThe development of core-clad silica glass optical fibers has re...
We report a technique of fabrication of optical waveguides in lithium niobate which relies on our re...