paper

The effect of curvature and topology on membrane hydrodynamics

arXiv:0706.2198 · doi:10.1209/0295-5075/84/48001

Abstract

We study the mobility of extended objects (rods) on a spherical liquid-liquid interface to show how this quantity is modified in a striking manner by both the curvature and the topology of the interface. We present theoretical calculations and experimental measurements of the interfacial fluid velocity field around a moving rod bound to the crowded interface of a water-in-oil droplet. By using different droplet sizes, membrane viscosities, and rod lengths, we show that the viscosity mismatch between the interior and exterior fluids leads to a suppression of the fluid flow on small droplets that cannot be captured by the flat interface predictions.

4 pages, 3 figures

References in corpus (1)

Cited by in corpus (1)

The effect of curvature and topology on membrane hydrodynamics · wovepaper