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Updated: Jun 25, 2026

Optical Trapping of Nanoparticles
Published on: January 15, 2013
Optical properties of a nanosized hole in a thin metallic film
Tae-Ho Park1, Nikolay Mirin, J Britt Lassiter
1Department of Physics and Astronomy, M.S. 61, Laboratory for Nanophotonics, Rice University, Houston, Texas 77005-1892, USA.
Abstract:
Subwavelength holes are one of the most important structures in nanophotonics, providing a useful geometry for nanosensing and giving rise to extraordinary transmission when patterned in arrays. Here we theoretically and experimentally examine the optical properties of an individual nanohole in a thin metallic film. In contrast to localized plasmonic nanostructures with their own characteristic resonances, nanoholes provide a site for excitation of the underlying thin film surface plasmons. We show that both hole diameter and film thickness determine the energy of the optical resonance. A theoretical dispersion curve was obtained and verified using spectral measurements of individual nanoholes.

