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Journal ArticleDOI

Local-field enhancement on rough surfaces of metals, semimetals, and semiconductors with the use of optical second-harmonic generation

TLDR
In this article, optical second-harmonic generation was used to study the local field enhancement due to surface roughness on various materials ranging from the alkalis to a semiconductor, and the results were used to predict some rather substantial enhancements for surface Raman scattering for a number of substrate materials.
Abstract
Optical second-harmonic generation was used to study the local-field enhancement due to surface roughness on various materials ranging from the alkalis to a semiconductor. The roughness morphology was standardized by evaporating each material onto the same chemically etched glass slide, having microstructures hundreds to thousands of angstroms in size. With the laser excitation at 1.06 ..mu..m, the observed second-harmonic enhancements for different materials varied from 27 to 1 x 10/sup -3/ times that of silver. They were in fair agreement with a simple model calculation assuming that the rough surface is composed of a distribution of noninteracting hemispheroids on a plane. The results are used to predict some rather substantial enhancements for surface Raman scattering for a number of substrate materials.

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Chemistry and properties of nanocrystals of different shapes.

TL;DR: The interest in nanoscale materials stems from the fact that new properties are acquired at this length scale and, equally important, that these properties are equally important.
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Interparticle Coupling Effect on the Surface Plasmon Resonance of Gold Nanoparticles: From Theory to Applications

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Journal ArticleDOI

Nano-optics of surface plasmon polaritons

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Surface properties probed by second-harmonic and sum-frequency generation

TL;DR: In this article, the authors used second-harmonic generation and the related technique of infrared-visible light sum-frequency generation to monitor surface dynamics and reactions with sub-picosecond time resolution.
Journal ArticleDOI

Plasmonics: Localization and guiding of electromagnetic energy in metal/dielectric structures

TL;DR: In this article, the basic physics of surface-plasmon excitations occurring at metal/dielectric interfaces with special emphasis on the possibility of using such excitations for the localization of electromagnetic energy in one, two, and three dimensions, in a context of applications in sensing and waveguiding for functional photonic devices.