Despite decades of exploration of the colloidal glass transition, mechanistic explanation of glassy relaxation processes has remained murky. State-of-the-art theoretical models of the colloidal glass transition such as random first order transition theory, active barrier hopping theory, and non-equilibrium self-consistent generalized Langevin theory assert that relaxation reported at volume fractions above the ideal mode coupling theory prediction φg,MCT requires some sort of activated process, and that cooperative motion plays a central role. However, discrepancies between predicted and measured values of φg and ambiguity in the role of cooperative dynamics persist. Underlying both issues is the challenge of conducting deep concentration q...
Brownian dynamics simulations have been carried out on a binary colloidal mixture of particles of tw...
The transformation of flowing liquids into rigid glasses is thought to involve increasingly cooperat...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...
Despite decades of exploration of the colloidal glass transition, mechanistic explanation of glassy ...
A liquid that is slowly cooled below the melting temperature usually undergoes a first-order transit...
In the study of colloidal glasses, crystallization is often suppressed by leveraging size polydispe...
Aging in an attraction-driven colloidal glass is studied by computer simulations. The system is equi...
Dense soft glasses show strong collective caging behavior at sufficiently low temperatures. Using mo...
Glass-forming materials are characterized by an intermittent motion at the microscopic scale. Partic...
A popular picture of the intermittent dynamics of glassy materials depicts each particle as localize...
Using molecular dynamics simulations we investigate the finite-size dependence of the dynamical prop...
We use dynamic light scattering and numerical simulations to study the approach to equilibrium and t...
The evaluation of the long term stability of a material requires the estimation of its long-time dyn...
We report on a comprehensive theory-simulation-experimental study of collective and self-diffusion i...
International audienceStructural slowing down in a simple model of a polydisperse suspension of char...
Brownian dynamics simulations have been carried out on a binary colloidal mixture of particles of tw...
The transformation of flowing liquids into rigid glasses is thought to involve increasingly cooperat...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...
Despite decades of exploration of the colloidal glass transition, mechanistic explanation of glassy ...
A liquid that is slowly cooled below the melting temperature usually undergoes a first-order transit...
In the study of colloidal glasses, crystallization is often suppressed by leveraging size polydispe...
Aging in an attraction-driven colloidal glass is studied by computer simulations. The system is equi...
Dense soft glasses show strong collective caging behavior at sufficiently low temperatures. Using mo...
Glass-forming materials are characterized by an intermittent motion at the microscopic scale. Partic...
A popular picture of the intermittent dynamics of glassy materials depicts each particle as localize...
Using molecular dynamics simulations we investigate the finite-size dependence of the dynamical prop...
We use dynamic light scattering and numerical simulations to study the approach to equilibrium and t...
The evaluation of the long term stability of a material requires the estimation of its long-time dyn...
We report on a comprehensive theory-simulation-experimental study of collective and self-diffusion i...
International audienceStructural slowing down in a simple model of a polydisperse suspension of char...
Brownian dynamics simulations have been carried out on a binary colloidal mixture of particles of tw...
The transformation of flowing liquids into rigid glasses is thought to involve increasingly cooperat...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...