Configurations of supercooled liquids residing in their local potential minimum (i.e. in their inherent structure, IS) were found to support a non-zero shear stress. This IS stress was attributed to the constraint to the energy minimization imposed by boundary conditions, which keep size and shape of the simulation cell fixed. In this paper we further investigate the influence of these boundary conditions on the IS stress. We investigate its importance for the computation of the low frequency shear modulus of a glass obtaining a consistent picture for the low- and high frequency shear moduli over the full temperature range. Hence, we find that the IS stress corresponds to a non-thermal contribution to the fluctuation term in the Born-Green ...
We study the nonlinear rheology of a glass-forming binary mixture under the reversal of shear flow ...
International audienceThe shear modulus G of two glass-forming colloidal model systems in d = 3 and ...
21 pages, 21 figures, submitted to PREInternational audienceWe investigate by means of molecular dyn...
We show that at high densities, as the system size decreases, liquid becomes able to permanently sus...
In this thesis, the local yield stress method is applied and extended to study single, irreversible ...
Dans cette thèse, la méthode de la limite d’élasticité locale est appliquée et approfondie pour étud...
International audienceUsing numerical simulation of a 2D Lennard-Jones system, we study the crossove...
International audienceThe spatiotemporal correlations of the local stress tensor in supercooled liqu...
A steady shear flow can drive supercooled liquids into a non-equilibrium state. Using molecular dyna...
Large scale molecular dynamics simulations are performed to study the steady state yielding dynamics...
International audienceUsing molecular dynamics simulation of a standard coarse-grained polymer glass...
According to the interstitialcy model of condensed matter states, liquids are crystals containing a ...
We study the nonlinear rheology of a glass-forming binary mixture under the reversal of shear flow u...
We study the nonlinear rheology of a glass-forming binary mixture under the reversal of shear flow ...
International audienceThe shear modulus G of two glass-forming colloidal model systems in d = 3 and ...
21 pages, 21 figures, submitted to PREInternational audienceWe investigate by means of molecular dyn...
We show that at high densities, as the system size decreases, liquid becomes able to permanently sus...
In this thesis, the local yield stress method is applied and extended to study single, irreversible ...
Dans cette thèse, la méthode de la limite d’élasticité locale est appliquée et approfondie pour étud...
International audienceUsing numerical simulation of a 2D Lennard-Jones system, we study the crossove...
International audienceThe spatiotemporal correlations of the local stress tensor in supercooled liqu...
A steady shear flow can drive supercooled liquids into a non-equilibrium state. Using molecular dyna...
Large scale molecular dynamics simulations are performed to study the steady state yielding dynamics...
International audienceUsing molecular dynamics simulation of a standard coarse-grained polymer glass...
According to the interstitialcy model of condensed matter states, liquids are crystals containing a ...
We study the nonlinear rheology of a glass-forming binary mixture under the reversal of shear flow u...
We study the nonlinear rheology of a glass-forming binary mixture under the reversal of shear flow ...
International audienceThe shear modulus G of two glass-forming colloidal model systems in d = 3 and ...
21 pages, 21 figures, submitted to PREInternational audienceWe investigate by means of molecular dyn...