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Silver nanoparticle array structures that produce remarkably narrow plasmon lineshapes
749
Citations
22
References
2004
Year
Materials SciencePlasmonicsEngineeringNano-opticsPhysicsPlasmon ResonanceNanotechnologyOptical PropertiesSilver Nanoparticle ArrayApplied PhysicsSpherical Silver NanoparticlesPlasmonic CatalysisPlasmon-enhanced PhotovoltaicsMetallic NanomaterialsArray StructureBiophysicsNanophotonicsPlasmonic Material
Using electrodynamics calculations, we have discovered one dimensional array structures built from spherical silver nanoparticles that produce remarkably narrow ( approximately meV or less) plasmon resonance spectra upon irradiation with light that is polarized perpendicular to the array axis. The narrow lines require a minimum particle radius of about 30 nm to achieve. Variations of the plasmon resonance wavelength, extinction efficiency and width with particle size, array structure, interparticle distance and polarization direction are examined, and conditions which lead to the smallest widths are demonstrated. A simple analytical expression valid for infinite lattices shows that the sharp resonance arises from cancellation between the single particle width and the imaginary part of the radiative dipolar interaction.
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