We study the influence of hydrodynamic interactions on the self-diffusion of super-paramagnetic colloidal particles suspended in water. The colloids interact via repulsive dipolar forces due to an applied magnetic field, and their motion is effectively confined to two dimensions. By comparing experimental data with the results from extensive computer simulations, where the water flow fields are treated at the Rotne-Prager level, we show that the diffusivity is enhanced at all times due to hydrodynamic interactions. The enhancement effect becomes stronger with increasing particle density, but is almost unaffected by the temperature
Abstract. The influence of hydrodynamic interactions on lane formation of oppositely charged driven ...
Simulations of a colloidal particle suspended in a two-dimensional fluid are reported. The dissipati...
Confinement between two parallel surfaces is found, theoretically and experimentally, to drastically...
We study the influence of hydrodynamic interactions on the self-diffusion of super-paramagnetic coll...
The effect of hydrodynamic interactions (HI) on the long-time self-diffusion in quasi-two-dimensiona...
We study many-particle diffusion in 2D colloidal suspensions with full hydrodynamic interactions thr...
© 2015 American Physical Society. We compare experimental results from a quasi-two-dimensional collo...
We study the influence of hydrodynamic interactions (HI) on the dynamic structure factor S(q,t) and ...
Under partial confinement, the motion of colloidal particles is restricted to a plane or a line but ...
The authors analyze the long-time self-diffusion of charge-stabilized colloidal macroions in nondilu...
We study theoretically and experimentally static and diffusional properties of a strongly asymmetric...
We calculate short-time diffusion properties of suspensions of porous colloidal particles as a funct...
We consider the diffusion of a particle in a polymeric hydrogel in the presence of steric, electrost...
We study theoretically and experimentally static and diffusional properties of a strongly asymmetric...
The self-diffusion problem of Brownian particles under the constraint of quasi-one-dimensional (q1D)...
Abstract. The influence of hydrodynamic interactions on lane formation of oppositely charged driven ...
Simulations of a colloidal particle suspended in a two-dimensional fluid are reported. The dissipati...
Confinement between two parallel surfaces is found, theoretically and experimentally, to drastically...
We study the influence of hydrodynamic interactions on the self-diffusion of super-paramagnetic coll...
The effect of hydrodynamic interactions (HI) on the long-time self-diffusion in quasi-two-dimensiona...
We study many-particle diffusion in 2D colloidal suspensions with full hydrodynamic interactions thr...
© 2015 American Physical Society. We compare experimental results from a quasi-two-dimensional collo...
We study the influence of hydrodynamic interactions (HI) on the dynamic structure factor S(q,t) and ...
Under partial confinement, the motion of colloidal particles is restricted to a plane or a line but ...
The authors analyze the long-time self-diffusion of charge-stabilized colloidal macroions in nondilu...
We study theoretically and experimentally static and diffusional properties of a strongly asymmetric...
We calculate short-time diffusion properties of suspensions of porous colloidal particles as a funct...
We consider the diffusion of a particle in a polymeric hydrogel in the presence of steric, electrost...
We study theoretically and experimentally static and diffusional properties of a strongly asymmetric...
The self-diffusion problem of Brownian particles under the constraint of quasi-one-dimensional (q1D)...
Abstract. The influence of hydrodynamic interactions on lane formation of oppositely charged driven ...
Simulations of a colloidal particle suspended in a two-dimensional fluid are reported. The dissipati...
Confinement between two parallel surfaces is found, theoretically and experimentally, to drastically...