A relation between equilibrium, steady state, and waiting-time-dependent dynamical two-time correlation functions in dense glass-forming liquids subject to homogeneous steady shear flow is discussed. The systems under study show pronounced shear thinning, i.e., a significant speedup in their steady-state slow relaxation as compared to equilibrium. An approximate relation that recovers the exact limit for small waiting times is derived following the integration through transients (ITT) approach for the nonequilibrium Smoluchowski dynamics, and is exemplified within a schematic model in the framework of the mode-coupling theory of the glass transition (MCT). Computer simulation results for the tagged-particle density correlation functions cor...
The nonlinear rheological properties of dense colloidal suspensions under steady shear are discussed...
We numerically study dynamics and correlation length scales of a colloidal liquid in both quiescent ...
A combination of confocal microscopy and rheology experiments, Brownian dynamics (BD) and molecular ...
A relation between equilibrium, steady state, and waiting-time-dependent dynamical two-time correlat...
We compute the rheological properties of inelastic hard spheres in steady shear flow for general she...
A microscopic approach is presented for calculating general properties of interacting Brownian parti...
We use event driven simulations to analyze glassy dynamics as a function of density and energy dissi...
We use event driven simulations to analyze glassy dynamics as a function of density and energy dissi...
We study the transient behavior of a model fluid composed by soft repulsive spheres subjected to a p...
The results discussed here deal with the equilibrium as well as the nonequilibrium properties of gla...
4 pages, latex, 3 ps figuresIn a fluid out of equilibrium, the fluctuation dissipation theorem (FDT)...
We study the transient behavior of a model fluid composed by soft repulsive spheres subjected to a p...
We study the dynamics of a tagged particle in a glassy system under shear. The recently developed in...
We study the dynamics of a tagged particle in a glassy system under shear. The recently developed in...
We study the dynamics of a tagged particle in a glassy system under shear. The recently developed in...
The nonlinear rheological properties of dense colloidal suspensions under steady shear are discussed...
We numerically study dynamics and correlation length scales of a colloidal liquid in both quiescent ...
A combination of confocal microscopy and rheology experiments, Brownian dynamics (BD) and molecular ...
A relation between equilibrium, steady state, and waiting-time-dependent dynamical two-time correlat...
We compute the rheological properties of inelastic hard spheres in steady shear flow for general she...
A microscopic approach is presented for calculating general properties of interacting Brownian parti...
We use event driven simulations to analyze glassy dynamics as a function of density and energy dissi...
We use event driven simulations to analyze glassy dynamics as a function of density and energy dissi...
We study the transient behavior of a model fluid composed by soft repulsive spheres subjected to a p...
The results discussed here deal with the equilibrium as well as the nonequilibrium properties of gla...
4 pages, latex, 3 ps figuresIn a fluid out of equilibrium, the fluctuation dissipation theorem (FDT)...
We study the transient behavior of a model fluid composed by soft repulsive spheres subjected to a p...
We study the dynamics of a tagged particle in a glassy system under shear. The recently developed in...
We study the dynamics of a tagged particle in a glassy system under shear. The recently developed in...
We study the dynamics of a tagged particle in a glassy system under shear. The recently developed in...
The nonlinear rheological properties of dense colloidal suspensions under steady shear are discussed...
We numerically study dynamics and correlation length scales of a colloidal liquid in both quiescent ...
A combination of confocal microscopy and rheology experiments, Brownian dynamics (BD) and molecular ...