Femtosecond laser-induced backward transfer of transparent photopolymers is demonstrated in the solid state, assisted by a digital micromirror spatial light modulator for producing shaped deposits. Through use of an absorbing silicon carrier substrate, we have been able to successfully transfer solid-phase material, with lateral dimensions as small as ~6 microns. In addition, a carrier of silicon incorporating a photonic waveguide relief structure enables the transfer of imprinted deposits that have been accomplished with surface features exactly complementing those present on the substrate, with an observed minimum feature size of 140 nm
Pulsed laser can be used to eject materials from transparent donors through an ablation based expuls...
The Laser-Induced Forward Transfer (LIFT) method exists as a relatively simple and versatile additiv...
The laser-interference-induced backward transfer (LIIBT) that occurred during the nanostripe structu...
Laser-induced transfer (LIT) covers a family of techniques for rapid prototyping of photonic, electr...
Laser-induced forward transfer (LIFT) is a technique for printing thin-film materials in a solid or ...
The laser-induced forward transfer (LIFT) of thin films is an attractive technique to deposit materi...
The forward and backward femtosecond laser-induced transfer of thin films in an intact state with go...
Laser-induced forward transfer (LIFT) is a technique for depositing pixels from thin film donor mate...
We present laser-induced forward transfer of solid-phase polymer films, shaped using a Digital Micro...
The Laser-Induced Forward Transfer (LIFT) technique [1] exists as a simple method for the direct-wri...
2D materials such as graphene have great potential as the basis for novel optoelectronic devices. T...
AbstractWe have studied the transfer regimes and dynamics of polymer flyers from laser-induced backw...
We have studied the transfer regimes and dynamics of polymer flyers from laser-induced backward tran...
The subject of this thesis is the study of the Laser Induced Forward Transfer (LIFT) technique with ...
International audienceThis paper deals with transfer induced by laser of thin layers of a conducting...
Pulsed laser can be used to eject materials from transparent donors through an ablation based expuls...
The Laser-Induced Forward Transfer (LIFT) method exists as a relatively simple and versatile additiv...
The laser-interference-induced backward transfer (LIIBT) that occurred during the nanostripe structu...
Laser-induced transfer (LIT) covers a family of techniques for rapid prototyping of photonic, electr...
Laser-induced forward transfer (LIFT) is a technique for printing thin-film materials in a solid or ...
The laser-induced forward transfer (LIFT) of thin films is an attractive technique to deposit materi...
The forward and backward femtosecond laser-induced transfer of thin films in an intact state with go...
Laser-induced forward transfer (LIFT) is a technique for depositing pixels from thin film donor mate...
We present laser-induced forward transfer of solid-phase polymer films, shaped using a Digital Micro...
The Laser-Induced Forward Transfer (LIFT) technique [1] exists as a simple method for the direct-wri...
2D materials such as graphene have great potential as the basis for novel optoelectronic devices. T...
AbstractWe have studied the transfer regimes and dynamics of polymer flyers from laser-induced backw...
We have studied the transfer regimes and dynamics of polymer flyers from laser-induced backward tran...
The subject of this thesis is the study of the Laser Induced Forward Transfer (LIFT) technique with ...
International audienceThis paper deals with transfer induced by laser of thin layers of a conducting...
Pulsed laser can be used to eject materials from transparent donors through an ablation based expuls...
The Laser-Induced Forward Transfer (LIFT) method exists as a relatively simple and versatile additiv...
The laser-interference-induced backward transfer (LIIBT) that occurred during the nanostripe structu...