Publication | Open Access
Hydrodynamically Enforced Entropic Trapping of Brownian Particles
67
Citations
38
References
2013
Year
Corrugated ChannelEngineeringForce FieldPhysicsFluid MechanicsHydrodynamicsBrownian ParticlesDisperse FlowTransport PhenomenaScalar TransportBrownian MotionMultiphase FlowParticle-laden Flow
We study the transport of Brownian particles through a corrugated channel caused by a force field containing curl-free (scalar potential) and divergence-free (vector potential) parts. We develop a generalized Fick-Jacobs approach leading to an effective one-dimensional description involving the potential of mean force. As an application, the interplay of a pressure-driven flow and an oppositely oriented constant bias is considered. We show that for certain parameters, the particle diffusion is significantly suppressed via the property of hydrodynamically enforced entropic particle trapping.
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