We study the relaxation process in a simple glass former-the Kob-Andersen lattice gas model. We show that, for this model, structural relaxation is due to slow percolation of regions of cooperatively moving particles, which leads to heterogeneous dynamics of the system. We find that the size distribution of these regions is given by a power law and that their formation is encoded in the initial structure of the particles, with the memory of initial configuration increasingly retained with increasing density
We study the relaxation process in a two-dimensional lattice gas model, where the interactions arise...
In polymers melts and supercooled liquids, the glassy dynamics is characterized by the rattling of m...
Temporal relaxation of density fluctuations in supercooled liquids near the glass transition occurs ...
We investigate the relaxation process and the dynamical heterogeneities of the kinetically constrain...
We investigate via Monte Carlo simulations the kinetically constrained Kob-Andersen lattice glass mo...
We investigate via Monte Carlo simulations the kinetically constrained Kob-Andersen lattice glass mo...
The transport properties of glass-forming systems have many features that are not found in normal li...
In this work we review recent computational advances in the understanding of the relaxationdynamics ...
International audienceWe numerically study the equilibrium relaxation dynamics of a two-dimensional ...
Supercooled liquids have been shown to be dynamically heterogeneous with different regions of the sy...
Kinetically constrained lattice gases (KCLG) are interacting particle systems which show some of th...
We investigate the heterogeneous dynamics in a model, where chemical gelation and glass transition i...
We conduct a numerical study of the dynamical behavior of a system of three-dimensional "crosses," p...
We conduct a numerical study of the dynamical behavior of a system of three-dimensional "crosses," p...
By means of the isoconfigurational method we calculate the change in the propensity for motion that ...
We study the relaxation process in a two-dimensional lattice gas model, where the interactions arise...
In polymers melts and supercooled liquids, the glassy dynamics is characterized by the rattling of m...
Temporal relaxation of density fluctuations in supercooled liquids near the glass transition occurs ...
We investigate the relaxation process and the dynamical heterogeneities of the kinetically constrain...
We investigate via Monte Carlo simulations the kinetically constrained Kob-Andersen lattice glass mo...
We investigate via Monte Carlo simulations the kinetically constrained Kob-Andersen lattice glass mo...
The transport properties of glass-forming systems have many features that are not found in normal li...
In this work we review recent computational advances in the understanding of the relaxationdynamics ...
International audienceWe numerically study the equilibrium relaxation dynamics of a two-dimensional ...
Supercooled liquids have been shown to be dynamically heterogeneous with different regions of the sy...
Kinetically constrained lattice gases (KCLG) are interacting particle systems which show some of th...
We investigate the heterogeneous dynamics in a model, where chemical gelation and glass transition i...
We conduct a numerical study of the dynamical behavior of a system of three-dimensional "crosses," p...
We conduct a numerical study of the dynamical behavior of a system of three-dimensional "crosses," p...
By means of the isoconfigurational method we calculate the change in the propensity for motion that ...
We study the relaxation process in a two-dimensional lattice gas model, where the interactions arise...
In polymers melts and supercooled liquids, the glassy dynamics is characterized by the rattling of m...
Temporal relaxation of density fluctuations in supercooled liquids near the glass transition occurs ...