When short-range attractions are combined with long-range repulsions in colloidal particle systems, complex microphases can emerge. Here, we study a system of isotropic particles, which can form lamellar structures or a disordered fluid phase when temperature is varied. We show that, at equilibrium, the lamellar structure crystallizes, while out of equilibrium, the system forms a variety of structures at different shear rates and temperatures above melting. The shear-induced ordering is analyzed by means of principal component analysis and artificial neural networks, which are applied to data of reduced dimensionality. Our results reveal the possibility of inducing ordering by shear, potentially providing a feasible route to the fabrication...
Colloidal systems consist of microscopic particles — called colloids — that are dispersed in a solve...
In colloidal suspensions, at low volume fraction and temperature, dynamical arrest occurs via the gr...
We systematically study the relationship between equilibrium and non-equilibrium phase diagrams of a...
When short-range attractions are combined with long-range repulsions in colloidal particle systems, ...
PACS 64.75.+g – Solubility, segregation, and mixing; phase separation PACS 47.54.-r – Pattern select...
The non-equilibrium phase behavior of a colloidal hard-sphere fluid under oscillatory shear was inve...
Colloidal particles, i.e. particles at the nanometer scale, experience random motion (Disorder), gen...
For a system of Brownian particles interacting via a soft exponential potential we investigate the ...
Lattice Boltzmann simulations are used to study the phase ordering of a system quenched into a lamel...
We perform non-equilibrium Brownian dynamics simulations to investigate the out-of-equilibrium phase...
We investigate the behavior of colloidal suspensions with different volume fractions confined betwee...
We report results of nonequilibrium molecular dynamics simulations of a one-component glassy system ...
In colloids with competing short-range attractions and long-range repulsions, microcrystalline gels ...
Block copolymers self-assemble to form a variety of different phases with highly regular patterns, d...
Monodisperse suspensions of Brownian colloidal spheres crystallize at high densities, and ordering u...
Colloidal systems consist of microscopic particles — called colloids — that are dispersed in a solve...
In colloidal suspensions, at low volume fraction and temperature, dynamical arrest occurs via the gr...
We systematically study the relationship between equilibrium and non-equilibrium phase diagrams of a...
When short-range attractions are combined with long-range repulsions in colloidal particle systems, ...
PACS 64.75.+g – Solubility, segregation, and mixing; phase separation PACS 47.54.-r – Pattern select...
The non-equilibrium phase behavior of a colloidal hard-sphere fluid under oscillatory shear was inve...
Colloidal particles, i.e. particles at the nanometer scale, experience random motion (Disorder), gen...
For a system of Brownian particles interacting via a soft exponential potential we investigate the ...
Lattice Boltzmann simulations are used to study the phase ordering of a system quenched into a lamel...
We perform non-equilibrium Brownian dynamics simulations to investigate the out-of-equilibrium phase...
We investigate the behavior of colloidal suspensions with different volume fractions confined betwee...
We report results of nonequilibrium molecular dynamics simulations of a one-component glassy system ...
In colloids with competing short-range attractions and long-range repulsions, microcrystalline gels ...
Block copolymers self-assemble to form a variety of different phases with highly regular patterns, d...
Monodisperse suspensions of Brownian colloidal spheres crystallize at high densities, and ordering u...
Colloidal systems consist of microscopic particles — called colloids — that are dispersed in a solve...
In colloidal suspensions, at low volume fraction and temperature, dynamical arrest occurs via the gr...
We systematically study the relationship between equilibrium and non-equilibrium phase diagrams of a...