4 pages, 5 figuresInternational audienceWe use large-scale molecular dynamics simulations to study the kinetics of the liquid-gas phase separation if the temperature is lowered across the glass transition of the dense phase. We observe a gradual change from phase separated systems at high temperatures to nonequilibrium, gel-like structures that evolve very slowly at low temperatures. The microscopic mechanisms responsible for the coarsening strongly depend on temperature, and change from diffusive motion at high temperature to a strongly intermittent, heterogeneous and thermally activated dynamics at low temperature, leading to logarithmically slow growth of the typical domain size
The domain growth in the late-time regime of phase-separating two-dimensional critical fluid mixtur...
While the interplay between liquid-liquid phase separation (LLPS) and glass formation in biological ...
Quenching-in of different high T complexities of glassformers for leisurely study at lower temperatu...
Nous réalisons des simulations numériques de décompositions spinodales en dessous de la température ...
Nous réalisons des simulations numériques de décompositions spinodales en dessous de la température ...
The dynamics of separated phases below the spinodal curve are strongly affected by the strength of c...
The consequences of a glass transition occurring in one of the two phases formed by spinodal decomp...
Domain growth during the kinetics of phase separation is studied following vapor-liquid transition i...
We present a numerical method for simulations of spinodal decomposition of liquid-vapor systems. The...
In previous works, we showed that the spinodal decomposition of low-viscosity liquid mixtures is dri...
Most materials attain a glassy state at low temperatures under suitable methods of preparation. This...
This thesis studies the glassy slowdown in binary mixtures. We investigate the role of concentration...
The glass transition, whereby liquids transform into amorphous solids at low temperatures, is a subj...
In this molecular dynamics simulation study we ascertain the dynamics of the glass transition for po...
In previous works, we showed that the spinodal decomposition of low-viscosity liquid mixtures is dri...
The domain growth in the late-time regime of phase-separating two-dimensional critical fluid mixtur...
While the interplay between liquid-liquid phase separation (LLPS) and glass formation in biological ...
Quenching-in of different high T complexities of glassformers for leisurely study at lower temperatu...
Nous réalisons des simulations numériques de décompositions spinodales en dessous de la température ...
Nous réalisons des simulations numériques de décompositions spinodales en dessous de la température ...
The dynamics of separated phases below the spinodal curve are strongly affected by the strength of c...
The consequences of a glass transition occurring in one of the two phases formed by spinodal decomp...
Domain growth during the kinetics of phase separation is studied following vapor-liquid transition i...
We present a numerical method for simulations of spinodal decomposition of liquid-vapor systems. The...
In previous works, we showed that the spinodal decomposition of low-viscosity liquid mixtures is dri...
Most materials attain a glassy state at low temperatures under suitable methods of preparation. This...
This thesis studies the glassy slowdown in binary mixtures. We investigate the role of concentration...
The glass transition, whereby liquids transform into amorphous solids at low temperatures, is a subj...
In this molecular dynamics simulation study we ascertain the dynamics of the glass transition for po...
In previous works, we showed that the spinodal decomposition of low-viscosity liquid mixtures is dri...
The domain growth in the late-time regime of phase-separating two-dimensional critical fluid mixtur...
While the interplay between liquid-liquid phase separation (LLPS) and glass formation in biological ...
Quenching-in of different high T complexities of glassformers for leisurely study at lower temperatu...