The dynamical properties of the site frustrated percolation model are investigated and compared with those of glass-forming liquids. When the density of the particles on the lattice becomes high enough, the dynamics of the model becomes very slow, due to geometrical constraints, and rearrangement on large scales is needed to allow relaxation. The autocorrelation functions, the specific volume for different cooling rates, and the mean-square displacement are evaluated and are found to exhibit glassy behavior
We present a precise atomic scale approach to topological rigidity theory of sodium silicate glasses...
We numerically study the dynamical properties of fully frustrated models in two and three dimensions...
We study glass formation in a lattice model for living, semiflexible polymers. Our model exhibits lo...
The dynamical properties of the site frustrated percolation model are investigated and compared with...
Glassy systems are disordered systems characterized by extremely slow dynamics. Examples are superco...
The dynamical properties of a three-dimensional model glass, the frustrated Ising lattice gas (FILG)...
We show that the relaxation dynamics near a glass transition with continuous ergodicity breaking can...
Geometric frustration, i.e. the impossibility to extend the local order of a system to tile the whol...
In this paper we study the three-dimensional frustrated lattice gas model in the annealed version, w...
We study the relaxation process in a two-dimensional lattice gas model, where the interactions arise...
Many fascinating questions still remain unsettled for condensed matter physicists who study the glas...
We investigate via Monte Carlo simulations the kinetically constrained Kob-Andersen lattice glass mo...
We investigate the relaxation process and the dynamical heterogeneities of the kinetically constrain...
We present a precise atomic scale approach to topological rigidity theory of sodium silicate glasses...
We numerically study the dynamical properties of fully frustrated models in two and three dimensions...
We study glass formation in a lattice model for living, semiflexible polymers. Our model exhibits lo...
The dynamical properties of the site frustrated percolation model are investigated and compared with...
Glassy systems are disordered systems characterized by extremely slow dynamics. Examples are superco...
The dynamical properties of a three-dimensional model glass, the frustrated Ising lattice gas (FILG)...
We show that the relaxation dynamics near a glass transition with continuous ergodicity breaking can...
Geometric frustration, i.e. the impossibility to extend the local order of a system to tile the whol...
In this paper we study the three-dimensional frustrated lattice gas model in the annealed version, w...
We study the relaxation process in a two-dimensional lattice gas model, where the interactions arise...
Many fascinating questions still remain unsettled for condensed matter physicists who study the glas...
We investigate via Monte Carlo simulations the kinetically constrained Kob-Andersen lattice glass mo...
We investigate the relaxation process and the dynamical heterogeneities of the kinetically constrain...
We present a precise atomic scale approach to topological rigidity theory of sodium silicate glasses...
We numerically study the dynamical properties of fully frustrated models in two and three dimensions...
We study glass formation in a lattice model for living, semiflexible polymers. Our model exhibits lo...