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Electromagnetic energy transport via linear chains of silver nanoparticles

Optics Letters · 1998 · Vol. 23(17) · pp. 1331–1331
Michael QuintenA. LeitnerJoachim R. KrennF. R. Aussenegg

Abstract

We propose the idea of a subwavelength-sized light guide represented by a linear chain of spherical metal nanoparticles in which light is transmitted by electrodynamic interparticle coupling. The light-transport properties of this system are investigated by use of model calculations based on generalized Mie theory. Considering Ag particles of 50-nm diameter, we find optimum guiding conditions for an interparticle spacing of 25 nm, and a corresponding 1/e signal-damping length of 900 nm is evaluated. The proposed principle of optical energy transport may be useful for subwavelength transmission lines within integrated optics circuits and for near-field optical microscopy.

Gold and Silver Nanoparticles Synthesis and ApplicationsPlasmonic and Surface Plasmon ResearchNear-Field Optical MicroscopyOpticsNanoparticleNear-field opticsMie scatteringMaterials scienceCoupling (piping)Geometrical opticsElectromagnetic fieldNear and far fieldRay
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References
Optical Constants of the Noble Metals
Physical review. B, Solid state · 1972 · 19,534 citations
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