This thesis reports results from a study of particle dynamics in colloidal glasses in the absence and presence of a gravitational field. It also investigates the reentrant glass transition. All the experimental results are obtained after a real space analysis using a confocal scanning laser microscopy as experimental technique that significantly widens the time window over which colloidal systems can be studied. A fluorescent recovery of bleached regions in concentrated suspensions of fluorescent colloidal hard spheres was followed in real space. This method provided data for mean squared particle displacements up to time scales that are three orders of magnitude beyond those available by present experimental techniques like dynamic or stat...
This document describes an experimental investigation into dense collections of hard spherical parti...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...
Confocal scanning laser microscopy has been used to quantitatively analyze the structure and dynamic...
Confocal scanning laser microscopy has been used to quantitatively analyze the structure and dynamic...
We use dynamic light scattering and numerical simulations to study the approach to equilibrium and t...
We use dynamic light scattering and numerical simulations to study the approach to equilibrium and t...
The work presented in this doctoral thesis employs colloidal suspensions to explore key open problem...
This thesis describes experiments that utilize colloids to explore nonequilibrium phenomena. Specifi...
We use dynamic light scattering and computer simulations to study equilibrium dynamics and dynamic h...
The dynamic behavior of a hard-sphere colloidal suspension was studied by x-ray photon correlation s...
We use dynamic light scattering and computer simulations to study equilibrium dynamics and dynamic h...
This thesis describes experiments that utilize colloids to explore nonequilibrium phenomena. Specifi...
Our objective is to perform on homogeneous, fully equilibrated dispersions the full set of experimen...
This thesis reports on a comprehensive experimental study of the collective dynamics of colloidal ha...
This document describes an experimental investigation into dense collections of hard spherical parti...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...
Confocal scanning laser microscopy has been used to quantitatively analyze the structure and dynamic...
Confocal scanning laser microscopy has been used to quantitatively analyze the structure and dynamic...
We use dynamic light scattering and numerical simulations to study the approach to equilibrium and t...
We use dynamic light scattering and numerical simulations to study the approach to equilibrium and t...
The work presented in this doctoral thesis employs colloidal suspensions to explore key open problem...
This thesis describes experiments that utilize colloids to explore nonequilibrium phenomena. Specifi...
We use dynamic light scattering and computer simulations to study equilibrium dynamics and dynamic h...
The dynamic behavior of a hard-sphere colloidal suspension was studied by x-ray photon correlation s...
We use dynamic light scattering and computer simulations to study equilibrium dynamics and dynamic h...
This thesis describes experiments that utilize colloids to explore nonequilibrium phenomena. Specifi...
Our objective is to perform on homogeneous, fully equilibrated dispersions the full set of experimen...
This thesis reports on a comprehensive experimental study of the collective dynamics of colloidal ha...
This document describes an experimental investigation into dense collections of hard spherical parti...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...