International audiencePhase separation can drive spatial organization of multicomponent mixtures. For instance in developing animal embryos, effective phase separation descriptions have been used to account for the spatial organization of different tissue types. Similarly, separation of different tissue types and the emergence of a polar organization is also observed in cell aggregates mimicking early embryonic axis formation. Here, we describe such aggregates as deformable two-phase fluid droplets, which are suspended in a fluid environment (third phase). Using hybrid finite-volume Lattice-Boltzmann simulations, we numerically explore the out-of-equilibrium routes that can lead to the polar equilibrium state of such a droplet (Janus drople...
After quenching a partially miscible, initially homogeneous, critical liquid mixture to a temperatur...
We examine the nucleated growth of a binary, immiscible liquid drop within a homogeneous gas. The sy...
Phase separation under nonequilibrium conditions is exploited by biological cells to organize their ...
International audiencePhase separation can drive spatial organization of multicomponent mixtures. Fo...
When a viscous binary mixture subject to an applied shear flow is rapidly quenched into the unstable...
Liquid-liquid phase separation is ubiquitous in everyday life, such as formation of oil droplets in ...
Lattice Boltzmann simulations are used to investigate spinodal decomposition in a two-dimensional bi...
Lattice Boltzmann simulations are used to investigate spinodal decomposition in a two-dimensional bi...
Phase-separation dynamics of an asymmetric mixture of an isotropic dopant in a nematogenic fluid is ...
Open AccessPhase-separation dynamics of an asymmetric mixture of an isotropic dopant in a nematogeni...
Phase-separation dynamics of an asymmetric mixture of an isotropic dopant in a nematogenic fluid is ...
International audienceWe discuss a new mechanism of drop coarsening due to coalescence only, which d...
Droplets abound in nature and technology. In general, they are multicomponent, and, when out of equi...
Living and engineered systems rely on the stable coexistence of two interspersed liquid phases. Yet,...
Droplets abound in nature and technology. In general, they are multicomponent, and, when out of equi...
After quenching a partially miscible, initially homogeneous, critical liquid mixture to a temperatur...
We examine the nucleated growth of a binary, immiscible liquid drop within a homogeneous gas. The sy...
Phase separation under nonequilibrium conditions is exploited by biological cells to organize their ...
International audiencePhase separation can drive spatial organization of multicomponent mixtures. Fo...
When a viscous binary mixture subject to an applied shear flow is rapidly quenched into the unstable...
Liquid-liquid phase separation is ubiquitous in everyday life, such as formation of oil droplets in ...
Lattice Boltzmann simulations are used to investigate spinodal decomposition in a two-dimensional bi...
Lattice Boltzmann simulations are used to investigate spinodal decomposition in a two-dimensional bi...
Phase-separation dynamics of an asymmetric mixture of an isotropic dopant in a nematogenic fluid is ...
Open AccessPhase-separation dynamics of an asymmetric mixture of an isotropic dopant in a nematogeni...
Phase-separation dynamics of an asymmetric mixture of an isotropic dopant in a nematogenic fluid is ...
International audienceWe discuss a new mechanism of drop coarsening due to coalescence only, which d...
Droplets abound in nature and technology. In general, they are multicomponent, and, when out of equi...
Living and engineered systems rely on the stable coexistence of two interspersed liquid phases. Yet,...
Droplets abound in nature and technology. In general, they are multicomponent, and, when out of equi...
After quenching a partially miscible, initially homogeneous, critical liquid mixture to a temperatur...
We examine the nucleated growth of a binary, immiscible liquid drop within a homogeneous gas. The sy...
Phase separation under nonequilibrium conditions is exploited by biological cells to organize their ...