Publication | Open Access
Comparison of numerical methods in near-field computation for metallic nanoparticles
40
Citations
9
References
2011
Year
Numerical AnalysisEngineeringMetamaterialsMetallic NanomaterialsElectromagnetic MetamaterialsMetallic NanoparticlesNumerical ComputationOptical PropertiesNanoscale ModelingComputational ElectromagneticsOptical SystemsLaser-induced Shape TransformationBoundary Element MethodPlasmonic MaterialMaterials SciencePhysicsNanotechnologyNumerical Method For Partial Differential EquationPlasmonicsSilver NanoparticlesApplied PhysicsLight ScatteringElectromagnetic Field Solvers
Four widely used electromagnetic field solvers are applied to the problem of scattering by a spherical or spheroidal silver nanoparticle in glass. The solvers are tested in a frequency range where the imaginary part of the scatterer refractive index is relatively large. The scattering efficiencies and near-field results obtained by the different methods are compared to each other, as well as to recent experiments on laser-induced shape transformation of silver nanoparticles in glass.
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