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Updated: May 14, 2025

A Microfluidic-based Hydrodynamic Trap for Single Particles
Published on: January 21, 2011
A hybrid dielectrophoretic trap-optical tweezers platform for manipulating microparticles in aqueous suspension
Carlos David González-Gómez1,2, Jose Garcia-Guirado3, Romain Quidant3
1Universidad de Granada, Department of Applied Physics, Nanoparticles Trapping Laboratory, Granada, 18071, Spain. rul@ugr.es.
Abstract:
We demonstrate that a set of microfabricated electrodes can be coupled to a commercial optical tweezers device, implementing a hybrid electro-optical platform with multiple functionalities for the manipulation of micro-/nanoparticles in suspension. We show that the hybrid scheme allows enhanced manipulation capabilities, including hybrid dynamics, controlled accumulation in the dielectrophoretic trap from the optical tweezers, selectivity, and video tracking of the individual trajectories of trapped particles. This creates opportunities for novel studies in statistical physics and stochastic thermodynamics with multi-particle systems, previously limited to investigations with individual particles.

