Confinement can have a dramatic effect on the behavior of all sorts of particulate systems, and it therefore is an important phenomenon in many different areas of physics and technology. Here, we investigate the role played by the softness of the confining potential. Using grand canonical Monte Carlo simulations, we determine the phase diagram of three-dimensional hard spheres that in one dimension are constrained to a plane by a harmonic potential. The phase behavior depends strongly on the density and on the stiffness of the harmonic confinement. While we find the familiar sequence of confined hexagonal and square-symmetric packings, we do not observe any of the usual intervening ordered phases. Instead, the system phase separates under s...
In this work, we focus on low-dimensional colloidal model systems, via simulation studies and also s...
Freezing of soft spheres in slit nanopores is investigated using Grand canonical Monte Carlo simulat...
Hard sphere systems are often used to model simple fluids. The configuration spaces of hard spheres ...
We study the phase behaviour of hard spheres confined between two parallel hard plates using extensi...
The equation of state and the structure of hard spheres confined in spherical pores have been invest...
Colloids are ubiquitous in nature, e.g. dust, milk or blood and also exist as daily life products, e...
We study, via the replica method of disordered systems, the packing problem of hard-spheres with a s...
Grand canonical Monte Carlo simulations are used to investigate the structure of frozen phases in a ...
In this thesis, experiments and simulations are combined to investigate the nonequilibrium behaviour...
Colloidal systems with competing interactions have a complex phase diagram with several periodic mic...
A salient effect of strong confinement, especially when quasi one-dimensional, is to drastically alt...
Monte Carlo simulations for the equation of state and phase behavior of hard spheres confined inside...
We study closely packed crystalline structures formed by slow lateral compression of a colloidal sus...
We investigated the depletion interactions of colloids and hindrance behavior of hard and soft collo...
Hard spheres are an important benchmark of our understanding of natural and synthetic systems. In th...
In this work, we focus on low-dimensional colloidal model systems, via simulation studies and also s...
Freezing of soft spheres in slit nanopores is investigated using Grand canonical Monte Carlo simulat...
Hard sphere systems are often used to model simple fluids. The configuration spaces of hard spheres ...
We study the phase behaviour of hard spheres confined between two parallel hard plates using extensi...
The equation of state and the structure of hard spheres confined in spherical pores have been invest...
Colloids are ubiquitous in nature, e.g. dust, milk or blood and also exist as daily life products, e...
We study, via the replica method of disordered systems, the packing problem of hard-spheres with a s...
Grand canonical Monte Carlo simulations are used to investigate the structure of frozen phases in a ...
In this thesis, experiments and simulations are combined to investigate the nonequilibrium behaviour...
Colloidal systems with competing interactions have a complex phase diagram with several periodic mic...
A salient effect of strong confinement, especially when quasi one-dimensional, is to drastically alt...
Monte Carlo simulations for the equation of state and phase behavior of hard spheres confined inside...
We study closely packed crystalline structures formed by slow lateral compression of a colloidal sus...
We investigated the depletion interactions of colloids and hindrance behavior of hard and soft collo...
Hard spheres are an important benchmark of our understanding of natural and synthetic systems. In th...
In this work, we focus on low-dimensional colloidal model systems, via simulation studies and also s...
Freezing of soft spheres in slit nanopores is investigated using Grand canonical Monte Carlo simulat...
Hard sphere systems are often used to model simple fluids. The configuration spaces of hard spheres ...