The Journal of Chemical Physics · 1995 · 492 citations · 14 references
Numerical AnalysisEngineeringSurface-enhanced Raman ScatteringParticle MethodComputational ChemistryChemistryLight Scattering SpectroscopyRayleigh ScatteringArbitrary ShapesOptical PropertiesApproximation TheoryPhysicsAtomic PhysicsRaman Intensity CalculationOptical Particle SizingMultiscale ModelingSmall ParticlesIsolated TetrahedronNatural SciencesSpectroscopySurface ScienceApplied PhysicsLight ScatteringHigh-frequency ApproximationDiscrete Dipole Approximation
We present a discrete dipole approximation (DDA) method to determine extinction and Raman intensities for small metal particles of arbitrary shape. The Raman intensity calculation involves evaluation of surface electromagnetic fields, and thus is relevant to surface enhanced Raman scattering (SERS) intensities. We demonstrate convergence of the method by considering light absorption and scattering from an isolated spheroid, from an isolated tetrahedron, from two coupled spheroids, and from a spheroid on a flat surface. We also examine comparisons with traditional T-matrix methods. Extensions and simplifications of the method in studies of clusters and arrays of particles are presented.
14
Optical Constants of the Noble Metals
P. B. Johnson, R. W. Christy · Physical review. B, Solid state · 1972 · 19.5K citations