Publication | Closed Access
Derivation of plasmonic resonances in the Fourier modal method with adaptive spatial resolution and matched coordinates
58
Citations
32
References
2011
Year
Spectral TheoryEngineeringWave OpticPlasmonic ResonancesEigenvalue EquationOptical PropertiesAdaptive Spatial ResolutionOptical ResonancesComputational ElectromagneticsPhysicsFourier AnalysisInverse Scattering TransformsInverse ProblemsPlasmonicsNatural SciencesSpectroscopyWave ScatteringSpectral AnalysisHigh-frequency ApproximationOptical System Analysis
A very stable approach for finding optical resonances is to solve an eigenvalue equation that evolves from the linearization of the inverse scattering matrix. In this paper, we show how to use this approach in the Fourier modal method so that advanced coordinate transformation methods such as adaptive spatial resolution and matched coordinates can be included. Furthermore, we present a way that accelerates the computation of the inverse scattering matrix tremendously and allows the derivation of the resonant field distribution inside the structure efficiently.
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