Journal of the Optical Society of America B · 2013 · 163 citations · 41 references
EngineeringSurface-enhanced Raman ScatteringLight Scattering SpectroscopyArbitrary-shaped NanoparticlesMagnetoplasmonicsOptical PropertiesComputational ElectromagneticsBiophysicsNanophotonicsPlasmonic MaterialPhysicsNanotechnologyPlane SurfacePlasmonicsNanomaterialsNatural SciencesWave ScatteringApplied PhysicsLight ScatteringMultipole AnalysisMultipole ScatteringDiscrete Dipole Approximation
A theoretical approach, based on the discrete dipole approximation, for multipole analysis of light scattering by arbitrary-shaped nanoparticles located near or on a plane surface is presented. The obtained equations include the first multipoles up to the magnetic quadrupole and electric octupole moments. It is discussed how the suggested approach can be applied to the problem of multipole scattering of surface plasmon polaritons. As an example, the theoretical framework is used for investigation of light scattering by cylindrical Si nanoparticles located on different dielectric substrates, manifesting resonant interaction of these particles with light.
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