3Using molecular dynamics simulations, we study the slow dynamics of a hard sphere fluid confined in a disordered porous matrix. The presence of both discontinuous and continuous glass transitions as well as the complex interplay between single-particle and collective dynamics are well captured by a recent extension of mode-coupling theory for fluids in porous media. The degree of universality of the mode-coupling theory predictions for related models of colloids is studied by introducing size disparity between fluid and matrix particles, as well as softness in the interactions.nonenoneKurzidim J; Coslovich D; Kahl GKurzidim, J; Coslovich, D; Kahl,
Using the replica Omstein-Zernike (ROZ) integral equations, the effective interaction between hard s...
This review focuses on recent developments in the theoretical, numerical and experimental study of s...
We present results of molecular dynamics simulations performed on a Lennard-Jones liquid binary mixt...
http://arxiv.org/abs/0901.3649International audienceA mode-coupling theory for the slow single-parti...
3Using numerical simulations we study the slow dynamics of a colloidal hard-sphere fluid adsorbed in...
We analyze the slow glassy structural relaxation as measured through collective and tagged-particle ...
A colloidal system of spheres interacting with both a deep and narrow attractive potential and a sha...
The predictions of the mode-coupling theory of the glass transition (MCT) for the tagged-particle de...
We present simulation results addressing the dynamics of a colloidal system with attractive interact...
We perform a systematic analysis of continuously polydisperse hard-sphere fluids as a function of th...
A liquid that is slowly cooled below the melting temperature usually undergoes a first-order transit...
We present simulation results addressing the dynamics of a colloidal system with attractive interact...
International audiencePart of Special section on complex dynamics of fluids in disordered and crowde...
Within the framework of the mode-coupling theory of super-cooled liquids, we investigate new phenome...
We present a mode-coupling theory for the dynamics of a tagged particle in a driven granular fluid c...
Using the replica Omstein-Zernike (ROZ) integral equations, the effective interaction between hard s...
This review focuses on recent developments in the theoretical, numerical and experimental study of s...
We present results of molecular dynamics simulations performed on a Lennard-Jones liquid binary mixt...
http://arxiv.org/abs/0901.3649International audienceA mode-coupling theory for the slow single-parti...
3Using numerical simulations we study the slow dynamics of a colloidal hard-sphere fluid adsorbed in...
We analyze the slow glassy structural relaxation as measured through collective and tagged-particle ...
A colloidal system of spheres interacting with both a deep and narrow attractive potential and a sha...
The predictions of the mode-coupling theory of the glass transition (MCT) for the tagged-particle de...
We present simulation results addressing the dynamics of a colloidal system with attractive interact...
We perform a systematic analysis of continuously polydisperse hard-sphere fluids as a function of th...
A liquid that is slowly cooled below the melting temperature usually undergoes a first-order transit...
We present simulation results addressing the dynamics of a colloidal system with attractive interact...
International audiencePart of Special section on complex dynamics of fluids in disordered and crowde...
Within the framework of the mode-coupling theory of super-cooled liquids, we investigate new phenome...
We present a mode-coupling theory for the dynamics of a tagged particle in a driven granular fluid c...
Using the replica Omstein-Zernike (ROZ) integral equations, the effective interaction between hard s...
This review focuses on recent developments in the theoretical, numerical and experimental study of s...
We present results of molecular dynamics simulations performed on a Lennard-Jones liquid binary mixt...