Related Experiment Video
Updated: Jun 26, 2026

Microparticle Manipulation by Standing Surface Acoustic Waves with Dual-frequency Excitations
Published on: August 21, 2018
Forces and transport velocities for a particle in a slot waveguide
Allen H J Yang1, Tadsanapan Lerdsuchatawanich, David Erickson
1School of Chemical and Biomolecular Engineering, and Sibley School of Mechanical and Aerospace Engineering, Cornell University, Ithaca, New York, USA.
Abstract:
Optofluidic transport seeks to exploit the high-intensity electromagnetic energy in waveguiding structures to manipulate nanoscopic matter using radiation pressure and optical trapping forces. In this paper, we present an analysis of optical trapping and transport of sub-100 nm polystyrene and gold nanoparticles in silicon slot waveguides. This study focuses on the effect of particle size, particle refractive index, and slot waveguide geometry on trapping stability and the resulting transport speed. Our results indicate that stable trapping and transport can be achieved for objects as small as 10 or 20 nm in diameter with as much as a 100 fold enhancement in trapping stiffness over the state of the art.
Related Concept Videos
Velocity and Acceleration of a Wave
The velocity of the particles can be obtained by taking the partial derivative of the position equation with respect to time. We can...
Design Example: Forces in Sluice Gate
Key variables in...
Speed of a Transverse Wave
One of the key properties of any wave is the wave speed. Light...
Propagation Speed of Electromagnetic Waves
Couette Flow
Plane Electromagnetic Waves I
The EM field is assumed to be a...

