Publication | Open Access
Shape Matters: Plasmonic Nanoparticle Shape Enhances Interaction with Dielectric Substrate
146
Citations
35
References
2011
Year
Materials SciencePlasmonicsNanoparticle DiameterEngineeringPhysicsPlasmonic CatalysisNanotechnologyOptical PropertiesHemispherical Gallium NanoparticlesApplied PhysicsShape MattersDielectric SubstratesOptoelectronicsElectromagnetic MetamaterialsPlasmonic Material
Numerical analyses of the ultraviolet and visible plasmonic spectra measured from hemispherical gallium nanostructures on dielectric substrates reveal that resonance frequencies are quite sensitive to illumination angle and polarization in a way that depends on nanostructure size, shape, and substrate. Large, polarization-dependent splittings arise from the broken symmetry of hemispherical gallium nanoparticles on sapphire substrates, inducing strong interactions with the substrate that depend sensitively on the angle of illumination and the nanoparticle diameter.
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