Plasmonics: Localization and guiding of electromagnetic energy in metal/dielectric structures
Плазмоника: локализация и направляние электромагнитной энергии в металло/диэлектрических структурах
2005-07-01
SCID: 54.1/szn3hp67
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Raman enhancementlocalized plasmon resonancesmetal/dielectric interfacesplasmonic waveguidingsurface plasmons
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Abstract (AI)
We review 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. Localized plasmon resonances occurring in metallic nanoparticles are discussed both for single particles and particle ensembles, focusing on the generation of confined light fields enabling enhancement of Raman-scattering and nonlinear processes. We then survey the basic properties of interface plasmons propagating along flat boundaries of thin metallic films, with applications for waveguiding along patterned films, stripes, and nanowires. Interactions between plasmonic structures and optically active media are also discussed.
Key Findings
1
Interactions between plasmonic structures and optically active media influence device functionality and are important for photonic applications.
2
Interface plasmons propagating along flat thin-metal-film boundaries support waveguiding in patterned films, stripes, and nanowires.
3
Localized plasmon resonances in metallic nanoparticles produce confined light fields that enhance Raman scattering and nonlinear optical processes.
4
Surface-plasmon excitations at metal/dielectric interfaces enable localization of electromagnetic energy in one, two, and three dimensions for sensing and waveguiding applications.
Research Object
Surface-plasmon excitations and plasmonic structures at metal/dielectric interfaces (including metallic nanoparticles, thin films, stripes, and nanowires)
Research Subject
Localization and guiding of electromagnetic energy: localized plasmon resonances, confined light-field generation, enhancement of Raman and nonlinear processes, and propagation/waveguiding properties of interface plasmons
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2005-07-01
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