We report on direct inscription of type-II waveguides in bulk titanium-doped sapphire with an ultrafast chirpedpulse oscillator. Ti³⁺:Sapphire is of particular interest due to its large emission bandwidth which enables a broadband tunability and generation of ultra-short pulses. However, its lasing threshold is high and powerful high brightness pump sources are required. The fabrication of a waveguide in Ti³⁺:Sapphire could thus enable the fabrication of low-threshold tunable lasers and broadband fluorescence sources. The latter are of interest for optical coherence tomography where the obtainable resolution scales with the bandwidth of the light source. The fabricated waveguides are formed in-between two laser induced damage regions. This ...
Ti:sapphire is a widely used laser material with broad tunability (650-1100 nm), which makes it suit...
Femtosecond writing of refractive-index changes in sapphire is demonstrated by doping the crystal wi...
Ti: sapphire crystal is one of the most important materials as a laser medium, due to its broad abso...
We have employed femtosecond laser writing in order to induce refractive-index changes and waveguide...
We have employed femtosecond laser writing in order to induce refractive-index changes and waveguide...
We have employed femtosecond laser writing in order to induce refractive-index changes and waveguide...
We have employed femtosecond laser writing in order to induce refractive-index changes and waveguide...
We have employed femtosecond laser writing in order to induce refractive-index changes and waveguide...
We have employed femtosecond laser writing in order to induce refractive-index changes and waveguide...
Femtosecond-laser-written Ti:sapphire channel waveguides lase at ~798.25 nm above a threshold pump p...
A detailed study of the fabrication and continuous-wave laser operation of Ti:sapphire channel waveg...
Ti:sapphire is a widely used laser material with broad tunability (650-1100 nm), which makes it suit...
Ti:sapphire is a widely used laser material with broad tunability (650-1100 nm), which makes it suit...
We report on the fabrication of buried cannel waveguides in Sapphire crystals by 250-kHz high repeti...
We report on the fabrication of buried cannel waveguides in Sapphire crystals by 250-kHz high repeti...
Ti:sapphire is a widely used laser material with broad tunability (650-1100 nm), which makes it suit...
Femtosecond writing of refractive-index changes in sapphire is demonstrated by doping the crystal wi...
Ti: sapphire crystal is one of the most important materials as a laser medium, due to its broad abso...
We have employed femtosecond laser writing in order to induce refractive-index changes and waveguide...
We have employed femtosecond laser writing in order to induce refractive-index changes and waveguide...
We have employed femtosecond laser writing in order to induce refractive-index changes and waveguide...
We have employed femtosecond laser writing in order to induce refractive-index changes and waveguide...
We have employed femtosecond laser writing in order to induce refractive-index changes and waveguide...
We have employed femtosecond laser writing in order to induce refractive-index changes and waveguide...
Femtosecond-laser-written Ti:sapphire channel waveguides lase at ~798.25 nm above a threshold pump p...
A detailed study of the fabrication and continuous-wave laser operation of Ti:sapphire channel waveg...
Ti:sapphire is a widely used laser material with broad tunability (650-1100 nm), which makes it suit...
Ti:sapphire is a widely used laser material with broad tunability (650-1100 nm), which makes it suit...
We report on the fabrication of buried cannel waveguides in Sapphire crystals by 250-kHz high repeti...
We report on the fabrication of buried cannel waveguides in Sapphire crystals by 250-kHz high repeti...
Ti:sapphire is a widely used laser material with broad tunability (650-1100 nm), which makes it suit...
Femtosecond writing of refractive-index changes in sapphire is demonstrated by doping the crystal wi...
Ti: sapphire crystal is one of the most important materials as a laser medium, due to its broad abso...