Optics Letters · 2012 · 46 citations · 17 references
Numerical AnalysisPlasmonicsElectrical EngineeringMethod Of Fundamental SolutionLarge-scale Plasmonic ProblemsEngineeringPhysicsApplied PhysicsPlasmonic ProblemsHigh-frequency ApproximationComputational ElectromagneticsSurface Integral EquationNanophotonics
A surface integral equation together with the multilevel fast multipole algorithm is successfully applied to fast and accurate resolution of plasmonic problems involving a large number of unknowns. The absorption, scattering, and extinction efficiencies of several plasmonic gold spheres of increasing size are efficiently obtained solving the electric and magnetic current combined-field integral equation. The numerical predictions are compared with reference analytic results to demonstrate the accuracy, suitability, and capabilities of this approach when dealing with large-scale plasmonic problems.
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Optical Constants of the Noble Metals
P. B. Johnson, R. W. Christy · Physical review. B, Solid state · 1972 · 19.5K citations
Plasmonics for extreme light concentration and manipulation
Jon A. Schuller, Edward S. Barnard, Wenshan Cai et al. · Nature Materials · 2010 · 4.3K citations
Plasmonics, Engineering, Physics +5