Femtosecond laser micromachining is becoming an established technique for the fabrication of complex three-dimensional structures in glass. The combination of laser writing and chemical etching increases the technique versatility by allowing the fabrication of hollow structures within the bulk material. The possibility to encompass both optical and fluidic components in a single substrate allows us to realize optofluidic devices usable in several application fields. Here, we present new investigations of laser-assisted etching in Eagle XG glass showing good etching conditions at low repetition rates, where thermal effects can be neglected, and low irradiation speeds, which allow for complex microchannel network formation
We report on the effect of deposited energy for micro-machining of fused silica using femtosecond la...
In this paper, we present a laser etching and drilling technique for thin glass materials based on t...
International audienceThe purpose of the advanced applications of glass laser micromachining present...
Femtosecond laser micromachining is becoming an established technique for the fabrication of complex...
We use the combination of femtosecond laser dielectric modification and selective chemical etching t...
Glass is an alternative solution to polymer for the fabrication of three-dimensional (3D) microfluid...
In the last decades, the femtosecond laser micromachining of glass has attracted a lot of attention ...
By modification of glasses with ultrafast laser radiation and subsequent wet-chemical etching (here ...
Microfabrication of glasses using laser assisted chemical etching was first demonstrated in 2001 by ...
Femtosecond laser irradiation followed by chemical etching (FLICE) is a novel micro-fabrication tech...
We present a study of the sidewall surface quality inside microchannels fabricated in fused silica g...
[[abstract]]For many years, the development of effective laser machining techniques for making glass...
Abstract: We report on the fabrication of 3D micro-structures in fused silica glass using chemical e...
International audienceFemtosecond laser 3D processing technologies of transparent dielectrics have k...
We report on the effect of deposited energy for micro-machining of fused silica using femtosecond la...
In this paper, we present a laser etching and drilling technique for thin glass materials based on t...
International audienceThe purpose of the advanced applications of glass laser micromachining present...
Femtosecond laser micromachining is becoming an established technique for the fabrication of complex...
We use the combination of femtosecond laser dielectric modification and selective chemical etching t...
Glass is an alternative solution to polymer for the fabrication of three-dimensional (3D) microfluid...
In the last decades, the femtosecond laser micromachining of glass has attracted a lot of attention ...
By modification of glasses with ultrafast laser radiation and subsequent wet-chemical etching (here ...
Microfabrication of glasses using laser assisted chemical etching was first demonstrated in 2001 by ...
Femtosecond laser irradiation followed by chemical etching (FLICE) is a novel micro-fabrication tech...
We present a study of the sidewall surface quality inside microchannels fabricated in fused silica g...
[[abstract]]For many years, the development of effective laser machining techniques for making glass...
Abstract: We report on the fabrication of 3D micro-structures in fused silica glass using chemical e...
International audienceFemtosecond laser 3D processing technologies of transparent dielectrics have k...
We report on the effect of deposited energy for micro-machining of fused silica using femtosecond la...
In this paper, we present a laser etching and drilling technique for thin glass materials based on t...
International audienceThe purpose of the advanced applications of glass laser micromachining present...