We investigate the force-induced diffusive motion of a tracer particle inside a glass-forming suspension when a strong external force is applied to the probe (active nonlinear microrheology). A schematic model of mode-coupling theory introduced recently is extended to describe the transient dynamics of the probe particle, and used to analyze recent molecular-dynamics simulation data. The model describes non-trivial transient displacements of the probe before a steady-state velocity is reached. The external force also induces diffusive motion in the direction perpendicular to its axis. We address the relation between the transverse diffusion coefficient D⊥ and the force-dependent nonlinear friction coefficient ζ. Non-diffusive fluctuations i...
We analyze the dynamics of a tracer particle embedded in a bath of hard spheres confined in a channe...
We study the fluctuating motion of a Brownian-sized probe particle as it is dragged by a constant ex...
Rheology is the study of the flow of matter. Microrheology extends rheology to a microscopic scale b...
We investigate the force-induced diffusive motion of a tracer particle inside a glass-forming suspen...
In active microrheology, a strong external force is applied to a colloidal probe immersed in a compl...
We discuss a schematic model of mode-coupling theory for force-driven active nonlinear microrheology...
Microrheology was proposed almost twenty years ago as a technique to obtain rheological properties i...
We present a first-principles theory for the active nonlinear microrheology of colloidal model syste...
We investigate the displacements of a probe particle inside a glass, when a strong external force is...
We investigate the displacements of a probe particle inside a glass, when a strong external force is...
We investigate the displacements of a probe particle inside a glass, when a strong external force...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
Within a microscopic formalism for the nonequilibrium response of colloidal suspensions driven by an...
We analyze the nonlinear active microrheology of dense colloidal suspensions using a schematic model...
Soft solids like colloidal glasses exhibit a yield stress, above which the system starts to flow. Th...
We analyze the dynamics of a tracer particle embedded in a bath of hard spheres confined in a channe...
We study the fluctuating motion of a Brownian-sized probe particle as it is dragged by a constant ex...
Rheology is the study of the flow of matter. Microrheology extends rheology to a microscopic scale b...
We investigate the force-induced diffusive motion of a tracer particle inside a glass-forming suspen...
In active microrheology, a strong external force is applied to a colloidal probe immersed in a compl...
We discuss a schematic model of mode-coupling theory for force-driven active nonlinear microrheology...
Microrheology was proposed almost twenty years ago as a technique to obtain rheological properties i...
We present a first-principles theory for the active nonlinear microrheology of colloidal model syste...
We investigate the displacements of a probe particle inside a glass, when a strong external force is...
We investigate the displacements of a probe particle inside a glass, when a strong external force is...
We investigate the displacements of a probe particle inside a glass, when a strong external force...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
Within a microscopic formalism for the nonequilibrium response of colloidal suspensions driven by an...
We analyze the nonlinear active microrheology of dense colloidal suspensions using a schematic model...
Soft solids like colloidal glasses exhibit a yield stress, above which the system starts to flow. Th...
We analyze the dynamics of a tracer particle embedded in a bath of hard spheres confined in a channe...
We study the fluctuating motion of a Brownian-sized probe particle as it is dragged by a constant ex...
Rheology is the study of the flow of matter. Microrheology extends rheology to a microscopic scale b...