Fabrication and characteristics of two-dimensional (2D) and three-dimensional (3D) periodic structures, recorded inside the bulk of negative SU8 photoresist film by multiple-beam interference are reported. The recording was performed by ultrashort laser pulses of 150 fs duration with central wavelength of 800 nm, multiple beams were generated using a diffractive beam splitter. Intensity-dependent photomodification of the photoresist was initiated by multi-photon absorption. The development process removed the exposed regions of resist film, leaving free-standing 2D and 3D periodic dielectric structures. Detailed examination of the samples is presented, which reveals close resemblance between the features of the fabricated structures, and th...
ABSTRACT: In this work we report the application of two and three-beam single pulse laser interferen...
A simple optical interference method to fabricate microperiodic structures was demonstrated. Femtose...
In this work we report the application of two and three-beam single pulse laser interference lithogr...
We report femtosecond laser microfabrication in thin films of polymeric photoresists by (i) direct l...
We demonstrate fabrication of two-dimensional (2D) photonic crystal (PhC) structure inside the volum...
We demonstrate fabrication of two-dimensional (2D) photonic crystal (PhC) structure inside the volum...
We describe a novel microfabrication method based on interference of several coherent laser pulses i...
We report three-dimensional laser microfabrication, which enables microstructuring of materials on t...
Three-dimensional (3D) periodic dielectric structures were recorded in a commercial photoresist SU-8...
We report three-dimensional laser microfabrication, which enables microstructuring of materials on t...
AbstractMulti-photon polymerization using interference of several laser beams is a promising techniq...
International audienceA method to obtain three-dimensional sub-micrometric periodic structures is pr...
It is attractive to produce true three-dimensional (3D) microstructures both rapidly and economicall...
Femtosecond laser pulses are useful for laser microfabrication through multiphoton absorption. Howev...
We report a novel photo-polymerization technique of well-defined three-dimensional (3D) layer-by-lay...
ABSTRACT: In this work we report the application of two and three-beam single pulse laser interferen...
A simple optical interference method to fabricate microperiodic structures was demonstrated. Femtose...
In this work we report the application of two and three-beam single pulse laser interference lithogr...
We report femtosecond laser microfabrication in thin films of polymeric photoresists by (i) direct l...
We demonstrate fabrication of two-dimensional (2D) photonic crystal (PhC) structure inside the volum...
We demonstrate fabrication of two-dimensional (2D) photonic crystal (PhC) structure inside the volum...
We describe a novel microfabrication method based on interference of several coherent laser pulses i...
We report three-dimensional laser microfabrication, which enables microstructuring of materials on t...
Three-dimensional (3D) periodic dielectric structures were recorded in a commercial photoresist SU-8...
We report three-dimensional laser microfabrication, which enables microstructuring of materials on t...
AbstractMulti-photon polymerization using interference of several laser beams is a promising techniq...
International audienceA method to obtain three-dimensional sub-micrometric periodic structures is pr...
It is attractive to produce true three-dimensional (3D) microstructures both rapidly and economicall...
Femtosecond laser pulses are useful for laser microfabrication through multiphoton absorption. Howev...
We report a novel photo-polymerization technique of well-defined three-dimensional (3D) layer-by-lay...
ABSTRACT: In this work we report the application of two and three-beam single pulse laser interferen...
A simple optical interference method to fabricate microperiodic structures was demonstrated. Femtose...
In this work we report the application of two and three-beam single pulse laser interference lithogr...