International audienceUltrafast laser photoinscription of optical materials has seen a strong development in the recent years for a range of applications in integrated photonics. Fueled by its capability to confine energy in micro-domains of arbitrary geometries, it forecasts extensive potential in optical design. The process can locally modify the material structure and the electronic properties, changing in turn the refractive index. It thus lays down a powerful concept for three-dimensional modifications of materials, with the potential to design integrated optical functions. Using fused silica as model glass, this report discusses the physical mechanisms of photoinscription, outlining the possibility of refractive index engineering. We ...
Over the last decade, the ultrafast laser has emerged as a powerful tool to shape three-dimensional ...
International audienceShort and ultrashort laser pulses are particularly attractive for micro- and n...
Femtosecond (fs) laser microfabrication has been gathering more research interests due to its abilit...
International audienceUltrafast laser photoinscription of optical materials has seen a strong develo...
International audienceUltrafast laser radiation shows increasing potential for 3D functionalization ...
International audienceUltrafast lasers are rapidly developing into potential tools for 3D processing...
International audienceStrong nonlinear absorption promotes ultrafast lasers as potential tools for 3...
International audienceUltrafast lasers emerged as efficient tools to process transparent materials o...
International audienceUltrafast laser photoinscription experienced strong development fueled by its ...
International audienceThe nonlinear optical absorption character has underlined the potential of ult...
International audienceUltrafast lasers emerged as promising tools to process embedded refractive ind...
National audienceUltrafast laser photoinscription has become a viable method for 3D processing of di...
International audienceWe describe the evolution of ultrafast-laser-excited bulk fused silica over th...
Detailed studies of intense light – material interactions has led to new insights into fs laser indu...
Over the last decade, the ultrafast laser has emerged as a powerful tool to shape three-dimensional ...
International audienceShort and ultrashort laser pulses are particularly attractive for micro- and n...
Femtosecond (fs) laser microfabrication has been gathering more research interests due to its abilit...
International audienceUltrafast laser photoinscription of optical materials has seen a strong develo...
International audienceUltrafast laser radiation shows increasing potential for 3D functionalization ...
International audienceUltrafast lasers are rapidly developing into potential tools for 3D processing...
International audienceStrong nonlinear absorption promotes ultrafast lasers as potential tools for 3...
International audienceUltrafast lasers emerged as efficient tools to process transparent materials o...
International audienceUltrafast laser photoinscription experienced strong development fueled by its ...
International audienceThe nonlinear optical absorption character has underlined the potential of ult...
International audienceUltrafast lasers emerged as promising tools to process embedded refractive ind...
National audienceUltrafast laser photoinscription has become a viable method for 3D processing of di...
International audienceWe describe the evolution of ultrafast-laser-excited bulk fused silica over th...
Detailed studies of intense light – material interactions has led to new insights into fs laser indu...
Over the last decade, the ultrafast laser has emerged as a powerful tool to shape three-dimensional ...
International audienceShort and ultrashort laser pulses are particularly attractive for micro- and n...
Femtosecond (fs) laser microfabrication has been gathering more research interests due to its abilit...