Ordering of lamellar phases described by a free-energy functional with short-range interactions is numerically investigated in two dimensions by means of a pseudo-spectral method. The ordering process is found to depend on the fluid viscosity: it is arrested for large viscosity values and proceeds as a power law for small ones, with a crossover regime for intermediate values. At varying the free energy parameters, strong evidence has been found that the ordering law, unlike binary mixtures, is not unique
We use a lattice Boltzmann scheme to study the spinodal decomposition of a simple binary mixture ...
A model for the dynamics of the sterically stabilized dilute lamellar phase is constructed and studi...
Lattice Boltzmann simulations an used to investigate spinodal decomposition in a two-dimensional ...
PACS 64.75.+g – Solubility, segregation, and mixing; phase separation PACS 47.54.-r – Pattern select...
Ordering of lamellar phases described by a free-energy functional with short-range interactions is n...
We study the kinetics of domain growth of fluid mixtures quenched from a disordered to a lamellar ph...
We investigate the dynamical behavior of lamellar phases in ternary amphiphilic systems of water, o...
The quench of a binary mixture into a stable lamellar phase is numerically investigated. We present ...
Lattice Boltzmann simulations are used to study the phase ordering of a system quenched into a lamel...
The effects of hydrodynamic interactions on the lamellar ordering process for two-dimensional quench...
We present detailed results from numerical simulations of a simple mean-field dynamical model for th...
Pattern and dynamics during phase separation in a symmetrical binary (A+B) Lennard-Jones fluid are s...
Results are presented for the kinetics of domain growth of a two-dimensional fluid quenched from ...
By incorporating self-consistent field theory with lattice Boltzmann method, a model for polymer mel...
We study the kinetics of the nematic-isotropic transition in a two-dimensional liquid crystal by ...
We use a lattice Boltzmann scheme to study the spinodal decomposition of a simple binary mixture ...
A model for the dynamics of the sterically stabilized dilute lamellar phase is constructed and studi...
Lattice Boltzmann simulations an used to investigate spinodal decomposition in a two-dimensional ...
PACS 64.75.+g – Solubility, segregation, and mixing; phase separation PACS 47.54.-r – Pattern select...
Ordering of lamellar phases described by a free-energy functional with short-range interactions is n...
We study the kinetics of domain growth of fluid mixtures quenched from a disordered to a lamellar ph...
We investigate the dynamical behavior of lamellar phases in ternary amphiphilic systems of water, o...
The quench of a binary mixture into a stable lamellar phase is numerically investigated. We present ...
Lattice Boltzmann simulations are used to study the phase ordering of a system quenched into a lamel...
The effects of hydrodynamic interactions on the lamellar ordering process for two-dimensional quench...
We present detailed results from numerical simulations of a simple mean-field dynamical model for th...
Pattern and dynamics during phase separation in a symmetrical binary (A+B) Lennard-Jones fluid are s...
Results are presented for the kinetics of domain growth of a two-dimensional fluid quenched from ...
By incorporating self-consistent field theory with lattice Boltzmann method, a model for polymer mel...
We study the kinetics of the nematic-isotropic transition in a two-dimensional liquid crystal by ...
We use a lattice Boltzmann scheme to study the spinodal decomposition of a simple binary mixture ...
A model for the dynamics of the sterically stabilized dilute lamellar phase is constructed and studi...
Lattice Boltzmann simulations an used to investigate spinodal decomposition in a two-dimensional ...