The creation of complex three-dimensional (3D) fluidic systems composed of hollow micro- and nanostructures embedded in transparent substrates has attracted significant attention from both scientific and applied research communities. However, it is by now still a formidable challenge to build 3D micro- and nanofluidic structures with arbitrary configurations using conventional planar lithographic fabrication methods. As a direct and maskless fabrication technique, femtosecond laser micromachining provides a straightforward approach for high-precision, spatially-selective, modification inside transparent materials through nonlinear optical absorption. In this paper, we demonstrate rapid fabrication of high-aspect-ratio micro- and/or nanoflui...
In the last decades, research and development of microfluidics have made extraordinary progress, sin...
The three-dimensional (3-D) writing capability of a high repetition rate (1 MHz) fiber-amplified fem...
Lab-on-a-chip biological platforms have been intensively developed during the last decade since emer...
The creation of complex three-dimensional (3D) fluidic systems composed of hollow micro- and nanostr...
We report on controllable production of nanostructures embedded in a porous glass by femtosecond las...
The extreme nonlinear interaction betweenfemtosecond laser pulses and large-band-gapmaterials has en...
We report on the fabrication of nanofluidic channels directly buried in silicate glass with transver...
We demonstrate rapid fabrication of complex three-dimensional (3D) microfluidic channels with length...
Femtosecond lasers have revolutionized the processing of materials, since their ultrashort pulse wid...
Femtosecond laser direct writing is unique in allowing for fabrication of 3D micro- and nanofluidic ...
In the past decade, femtosecond (fs) laser microfabrication has received significant attention becau...
Glass is an alternative solution to polymer for the fabrication of three-dimensional (3D) microfluid...
We report on controllable production of nanostructures embedded in a porous glass by femtosecond las...
Lab-on-a-chip devices offer faster, cheaper, and better ways of doing chemical and biological analys...
The extremely high peak intensity associated with ultrashort pulse width of femtosecond laser allows...
In the last decades, research and development of microfluidics have made extraordinary progress, sin...
The three-dimensional (3-D) writing capability of a high repetition rate (1 MHz) fiber-amplified fem...
Lab-on-a-chip biological platforms have been intensively developed during the last decade since emer...
The creation of complex three-dimensional (3D) fluidic systems composed of hollow micro- and nanostr...
We report on controllable production of nanostructures embedded in a porous glass by femtosecond las...
The extreme nonlinear interaction betweenfemtosecond laser pulses and large-band-gapmaterials has en...
We report on the fabrication of nanofluidic channels directly buried in silicate glass with transver...
We demonstrate rapid fabrication of complex three-dimensional (3D) microfluidic channels with length...
Femtosecond lasers have revolutionized the processing of materials, since their ultrashort pulse wid...
Femtosecond laser direct writing is unique in allowing for fabrication of 3D micro- and nanofluidic ...
In the past decade, femtosecond (fs) laser microfabrication has received significant attention becau...
Glass is an alternative solution to polymer for the fabrication of three-dimensional (3D) microfluid...
We report on controllable production of nanostructures embedded in a porous glass by femtosecond las...
Lab-on-a-chip devices offer faster, cheaper, and better ways of doing chemical and biological analys...
The extremely high peak intensity associated with ultrashort pulse width of femtosecond laser allows...
In the last decades, research and development of microfluidics have made extraordinary progress, sin...
The three-dimensional (3-D) writing capability of a high repetition rate (1 MHz) fiber-amplified fem...
Lab-on-a-chip biological platforms have been intensively developed during the last decade since emer...