The quench of a binary mixture into a stable lamellar phase is numerically investigated. We present a novel approach to study the phenomenological equations governing the system dynamics based on the combination of lattice Boltzmann and finite difference equations. We can access large systems on time scales long enough to find evidence of dynamical scaling regime in the ordering process when hydrodynamics is operating
This paper presents an exploration of the phase separation behavior and pattern formation in a binar...
An coarse-grained approach to thermocapillarity effects in binary fluid systems is discussed along w...
Using lattice Boltzmann simulations we investigate the impact of the amplitude of concentration fluc...
Ordering of lamellar phases described by a free-energy functional with short-range interactions is n...
The kinetics of domain growth of fluid mixtures quenched from a disordered to a lamellar phase has b...
We study the kinetics of domain growth of fluid mixtures quenched from a disordered to a lamellar ph...
Lattice Boltzmann simulations an used to investigate spinodal decomposition in a two-dimensional ...
We use a lattice Boltzmann scheme to study the spinodal decomposition of a simple binary mixture ...
By incorporating self-consistent field theory with lattice Boltzmann method, a model for polymer mel...
Lattice Boltzmann simulations are used to study the phase ordering of a system quenched into a lamel...
We study the phase separation of a binary mixture in uniform shear flow in the framework of the cont...
PACS 64.75.+g – Solubility, segregation, and mixing; phase separation PACS 47.54.-r – Pattern select...
We examine the nucleated growth of a binary, immiscible liquid drop within a homogeneous gas. The sy...
The late-stage demixing following spinodal decomposition of a three-dimensional symmetric binary flu...
We apply lattice Boltzmann methods to study the relaxation of the velocity profile in binary fluids ...
This paper presents an exploration of the phase separation behavior and pattern formation in a binar...
An coarse-grained approach to thermocapillarity effects in binary fluid systems is discussed along w...
Using lattice Boltzmann simulations we investigate the impact of the amplitude of concentration fluc...
Ordering of lamellar phases described by a free-energy functional with short-range interactions is n...
The kinetics of domain growth of fluid mixtures quenched from a disordered to a lamellar phase has b...
We study the kinetics of domain growth of fluid mixtures quenched from a disordered to a lamellar ph...
Lattice Boltzmann simulations an used to investigate spinodal decomposition in a two-dimensional ...
We use a lattice Boltzmann scheme to study the spinodal decomposition of a simple binary mixture ...
By incorporating self-consistent field theory with lattice Boltzmann method, a model for polymer mel...
Lattice Boltzmann simulations are used to study the phase ordering of a system quenched into a lamel...
We study the phase separation of a binary mixture in uniform shear flow in the framework of the cont...
PACS 64.75.+g – Solubility, segregation, and mixing; phase separation PACS 47.54.-r – Pattern select...
We examine the nucleated growth of a binary, immiscible liquid drop within a homogeneous gas. The sy...
The late-stage demixing following spinodal decomposition of a three-dimensional symmetric binary flu...
We apply lattice Boltzmann methods to study the relaxation of the velocity profile in binary fluids ...
This paper presents an exploration of the phase separation behavior and pattern formation in a binar...
An coarse-grained approach to thermocapillarity effects in binary fluid systems is discussed along w...
Using lattice Boltzmann simulations we investigate the impact of the amplitude of concentration fluc...