The motion of a single Brownian particle of arbitrary size through a dilute colloidal dispersion of neutrally buoyant bath spheres of another characteristic size in a Newtonian solvent is examined in two contexts. First, the particle in question, the probe particle, is subject to a constant applied external force drawing it through the suspension as a simple model for active and nonlinear microrheology. The strength of the applied external force, normalized by the restoring forces of Brownian motion, is the Péclet number, Pe. This dimensionless quantity describes how strongly the probe is upsetting the equilibrium distribution of the bath particles. The mean motion and fluctuations in the probe position are related to interpreted quantities...
The effects of Brownian motion alone and in combination with an interparticle force of hard-sphere t...
Understanding the transport properties of microorganisms in fluid is a fundamental problem in soft m...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
The motion of a single Brownian probe particle subjected to a constant external body force and immer...
The motion of a single Brownian probe particle subjected to a constant external body force and immer...
We study the fluctuating motion of a Brownian-sized probe particle as it is dragged by a constant ex...
Small particles and their dynamics are of widespread interest due both to their unique properties an...
"Active matter" refers to a broad class of materials in which the constituent particles or organisms...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
Since the theoretical work of Einstein [1905] and von Smoluckowski [1906], and the experiments of Pe...
Since the theoretical work of Einstein [1905] and von Smoluckowski [1906], and the experiments of Pe...
Diffusiophoresis, the motion of a particle in response to an externally imposed concentration gradie...
Diffusiophoresis, the motion of a particle in response to an externally imposed concentration gradie...
In the Dissipative Particle Dynamics (DPD) simulation of suspension, the fluid (solvent) and colloid...
The effects of Brownian motion alone and in combination with an interparticle force of hard-sphere t...
Understanding the transport properties of microorganisms in fluid is a fundamental problem in soft m...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
The motion of a single Brownian probe particle subjected to a constant external body force and immer...
The motion of a single Brownian probe particle subjected to a constant external body force and immer...
We study the fluctuating motion of a Brownian-sized probe particle as it is dragged by a constant ex...
Small particles and their dynamics are of widespread interest due both to their unique properties an...
"Active matter" refers to a broad class of materials in which the constituent particles or organisms...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
Since the theoretical work of Einstein [1905] and von Smoluckowski [1906], and the experiments of Pe...
Since the theoretical work of Einstein [1905] and von Smoluckowski [1906], and the experiments of Pe...
Diffusiophoresis, the motion of a particle in response to an externally imposed concentration gradie...
Diffusiophoresis, the motion of a particle in response to an externally imposed concentration gradie...
In the Dissipative Particle Dynamics (DPD) simulation of suspension, the fluid (solvent) and colloid...
The effects of Brownian motion alone and in combination with an interparticle force of hard-sphere t...
Understanding the transport properties of microorganisms in fluid is a fundamental problem in soft m...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...