We use a stochastic model to study photoinduced surface relief grating (SRG) formation due to molecular transport in azobenzene polymer films. The model is shown to reproduce the essential experimental features of SRG formation. In particular, it predicts SRG formation under both p and spolarizations, and the double peaked topographies that can occur at early times of the process. The evolving molecular positions and orientations during exposure are also followed, providing a useful mechanistic picture of SRG dynamics.3 page(s
The physical origin of surface relief patterning on amorphous polymer films containing azobenzene-si...
The physical origin of surface relief patterning on amorphous polymer films containing azobenzene-si...
Recent progress in research of light-promoted surface morphing on polymer materials is reviewed. Pho...
We study theoretically the possible origin of a double-peak fine structure of Surface Relief Grating...
The microscopic and semi-macroscopic mechanisms responsible for photoinduced mass transport in funct...
We develop a model based on Fick\u27s law of diffusion as a phenomenological description of the mole...
The influence of the azobenzene concentration on the photo-induced surface relief grating (SRG) form...
We use molecular dynamics simulations to investigate the effect of the density of the host material ...
Polymer thin films doped with azobenzene molecules do have the ability to organize themselves in spo...
International audienceUsing the all-optical poling method, we observed the formation of a surface-re...
A model is developed to describe the migration mechanism of monomers during the lithographic prepara...
Simulations of volume fraction profiles formed during the lithographic preparation of polymer gratin...
Simulations of volume fraction profiles formed during the lithographic preparation of polymer gratin...
Light-induced isomerization processes in azobenzene-containing polymers produce mass transport that ...
Bei der holographischen Bestrahlung von azobenzenhaltigen Polymerfilmen mit polarisierten Laserstrah...
The physical origin of surface relief patterning on amorphous polymer films containing azobenzene-si...
The physical origin of surface relief patterning on amorphous polymer films containing azobenzene-si...
Recent progress in research of light-promoted surface morphing on polymer materials is reviewed. Pho...
We study theoretically the possible origin of a double-peak fine structure of Surface Relief Grating...
The microscopic and semi-macroscopic mechanisms responsible for photoinduced mass transport in funct...
We develop a model based on Fick\u27s law of diffusion as a phenomenological description of the mole...
The influence of the azobenzene concentration on the photo-induced surface relief grating (SRG) form...
We use molecular dynamics simulations to investigate the effect of the density of the host material ...
Polymer thin films doped with azobenzene molecules do have the ability to organize themselves in spo...
International audienceUsing the all-optical poling method, we observed the formation of a surface-re...
A model is developed to describe the migration mechanism of monomers during the lithographic prepara...
Simulations of volume fraction profiles formed during the lithographic preparation of polymer gratin...
Simulations of volume fraction profiles formed during the lithographic preparation of polymer gratin...
Light-induced isomerization processes in azobenzene-containing polymers produce mass transport that ...
Bei der holographischen Bestrahlung von azobenzenhaltigen Polymerfilmen mit polarisierten Laserstrah...
The physical origin of surface relief patterning on amorphous polymer films containing azobenzene-si...
The physical origin of surface relief patterning on amorphous polymer films containing azobenzene-si...
Recent progress in research of light-promoted surface morphing on polymer materials is reviewed. Pho...