The spinodal decomposition of binary mixtures in uniform shear flow is studied in the context of the time-dependent Ginzburg-Landau equation, approximated at one-loop order. We show that the structure factor obeys a generalized dynamical scaling with different growth exponents alpha(x) = 5/4 and alpha(y) = 1/4 in the flow and in the shear directions, respectively. The excess viscosity Delta eta after reaching a maximum relaxes to zero as gamma(-2)t(-3/2), gamma being the shear rate. Delta eta and other observables exhibit log-time periodic oscillations which can be interpreted as due to a growth mechanism where stretching and breakup of domains cyclically occur
We use a lattice Boltzmann scheme to study the spinodal decomposition of a simple binary mixture ...
The behavior of a phase separating binary mixture in uniform shear flow is investigated by numerical...
Light scattering techniques have been used to study the phase separation of a sheared binary fluid o...
The spinodal decomposition of binary mixtures in uniform shear flow is studied in the context of the...
The effect of shear flow on the phase-ordering dynamics of a binary mixture with field-dependent mob...
We construct a Ginzburg-Landau model for gels undergoing spinodal decomposition in terms of the poly...
Using large-scale molecular dynamics simulations of a two-component Lennard-Jones model in three dim...
We use lattice-Boltzmann simulations to examine late stage spinodal decomposition in binary fluids, ...
The effect of viscoelasticity on the early stages of spinodal decomposition is examined. In additio...
In this Thesis, we study the kinetics of systems undergoing spinodal decomposition, using computati...
When a binary mixture is cooled below its critical temperature it undergoes a phase transition and t...
The two initial stages of spinodal decomposition of a symmetric binary Lennard-Jones fluid have been...
We study the early stage of the phase separation of a binary mixture far from its critical point of ...
The late-stage demixing following spinodal decomposition of a three-dimensional symmetric binary flu...
We study the spinodal decomposition of a binary mixture in presence of fluid turbulence. Our study s...
We use a lattice Boltzmann scheme to study the spinodal decomposition of a simple binary mixture ...
The behavior of a phase separating binary mixture in uniform shear flow is investigated by numerical...
Light scattering techniques have been used to study the phase separation of a sheared binary fluid o...
The spinodal decomposition of binary mixtures in uniform shear flow is studied in the context of the...
The effect of shear flow on the phase-ordering dynamics of a binary mixture with field-dependent mob...
We construct a Ginzburg-Landau model for gels undergoing spinodal decomposition in terms of the poly...
Using large-scale molecular dynamics simulations of a two-component Lennard-Jones model in three dim...
We use lattice-Boltzmann simulations to examine late stage spinodal decomposition in binary fluids, ...
The effect of viscoelasticity on the early stages of spinodal decomposition is examined. In additio...
In this Thesis, we study the kinetics of systems undergoing spinodal decomposition, using computati...
When a binary mixture is cooled below its critical temperature it undergoes a phase transition and t...
The two initial stages of spinodal decomposition of a symmetric binary Lennard-Jones fluid have been...
We study the early stage of the phase separation of a binary mixture far from its critical point of ...
The late-stage demixing following spinodal decomposition of a three-dimensional symmetric binary flu...
We study the spinodal decomposition of a binary mixture in presence of fluid turbulence. Our study s...
We use a lattice Boltzmann scheme to study the spinodal decomposition of a simple binary mixture ...
The behavior of a phase separating binary mixture in uniform shear flow is investigated by numerical...
Light scattering techniques have been used to study the phase separation of a sheared binary fluid o...