We use super-paramagnetic colloidal particles confined by gravitation to a flat water-air interface as a model system to study the non-equilibrium liquid-solid phase transition in two dimensions. The system temperature is adjustable by changing the strength of an external magnetic field perpendicular to the water-air interface. Increasing the magnetic field on a timescale of milliseconds quenches the liquid to a strongly super-cooled state. If the system is cooled down out of equilibrium the solidification differs drastically from the equilibrium melting and freezing scenario as no hexatic phase is observable. The system solidifies to a polycrystalline structure with many grains of different orientations. Since the local closed packed order...
We study the influence of quenched disorder on the two-dimensional melting behavior of superparamagn...
We study the phase behaviour of a 2D colloidal system in the presence of a an external periodic 1D p...
An ultrafast quench is applied to binary mixtures of superparamagnetic colloidal particles confined ...
We use super-paramagnetic colloidal particles confined by gravitation to a flat water-air interface ...
We present the technical details of an experimental method to realize a model system for two-dimensi...
We describe experiments on binary mixtures of superparamagnetic colloidal particles confined by grav...
The crystallisation and melting behaviour of superparamagnetic colloidal particles confined within a...
The behaviour of colloidal particles in two-dimensional (2D) systems is addressed in real space and ...
Mixed-order phase transitions display a discontinuity in the order parameter like first-order transi...
The behaviour of colloidal particles in two-dimensional (2D) systems is addressed in real space and ...
We study the melting behavior of a binary system (R = 4.5 mm, r = 2.8 mm) of paramagnetic colloidal ...
This chapter discusses phase transitions in two-dimensional (2D) colloidal systems. In contrast to t...
Suspensions of super-paramagnetic colloids trapped in the water–air interface are an excellent model...
We use super-paramagnetic spherical particles which are arranged in a two-dimensional monolayer at a...
We study the influence of quenched disorder on the two-dimensional melting behavior of superparamagn...
We study the influence of quenched disorder on the two-dimensional melting behavior of superparamagn...
We study the phase behaviour of a 2D colloidal system in the presence of a an external periodic 1D p...
An ultrafast quench is applied to binary mixtures of superparamagnetic colloidal particles confined ...
We use super-paramagnetic colloidal particles confined by gravitation to a flat water-air interface ...
We present the technical details of an experimental method to realize a model system for two-dimensi...
We describe experiments on binary mixtures of superparamagnetic colloidal particles confined by grav...
The crystallisation and melting behaviour of superparamagnetic colloidal particles confined within a...
The behaviour of colloidal particles in two-dimensional (2D) systems is addressed in real space and ...
Mixed-order phase transitions display a discontinuity in the order parameter like first-order transi...
The behaviour of colloidal particles in two-dimensional (2D) systems is addressed in real space and ...
We study the melting behavior of a binary system (R = 4.5 mm, r = 2.8 mm) of paramagnetic colloidal ...
This chapter discusses phase transitions in two-dimensional (2D) colloidal systems. In contrast to t...
Suspensions of super-paramagnetic colloids trapped in the water–air interface are an excellent model...
We use super-paramagnetic spherical particles which are arranged in a two-dimensional monolayer at a...
We study the influence of quenched disorder on the two-dimensional melting behavior of superparamagn...
We study the influence of quenched disorder on the two-dimensional melting behavior of superparamagn...
We study the phase behaviour of a 2D colloidal system in the presence of a an external periodic 1D p...
An ultrafast quench is applied to binary mixtures of superparamagnetic colloidal particles confined ...