Published 2011 | Version Published
Journal Article Open

Colloidal diffusion and hydrodynamic screening near boundaries

Abstract

The hydrodynamic interactions between colloidal particles in small ensembles are measured at varying distances from a no-slip surface over a range of inter-particle separations. The diffusion tensor for motion parallel to the wall of each ensemble is calculated by analyzing thousands of particle trajectories generated by blinking holographic optical tweezers and by dynamic simulation. The Stokesian Dynamics simulations predict similar particle dynamics. By separating the dynamics into three classes of modes: self, relative and collective diffusion, we observe qualitatively different behavior depending on the relative magnitudes of the distance of the ensemble from the wall and the inter-particle separation. A simple picture of the pair-hydrodynamic interactions is developed, while many-body-hydrodynamic interactions give rise to more complicated behavior. The results demonstrate that the effect of many-body hydrodynamic interactions in the presence of a wall is much richer than the single particle behavior and that the multiple-particle behavior cannot be simply predicted by a superposition of pair interactions.

Additional Information

© 2011 The Royal Society of Chemistry. Received 10th December 2010, Accepted 5th May 2011. First published on the web 20 Jun 2011. We thank A. N. Beris for helpful discussions. We acknowledge the financial support of the NSF (NIRT CBET-0506701).

Attached Files

Published - Lele2011p15416Soft_Matter.pdf

Files

Lele2011p15416Soft_Matter.pdf

Files (498.9 kB)

Name Size
md5:dd53d5bd9757db5331e9e581f1b2725b
498.9 kB Preview Download

Additional details

Identifiers

Eprint ID
24723
Resolver ID
CaltechAUTHORS:20110808-093428080

Funding

NSF
NIRT CBET-0506701

Dates

Created
2011-10-06
Created from EPrint's datestamp field
Updated
2021-11-09
Created from EPrint's last_modified field