Publication | Closed Access
Dispersion and asymmetry effects of ADI-FDTD
63
Citations
5
References
2002
Year
Numerical AnalysisEngineeringOptical Transmission SystemGeneralized DerivationDispersionAsymmetry EffectsOperator SplittingNumerical ComputationOptical PropertiesComputational ElectromagneticsBoundary Element MethodMethod Of Fundamental SolutionPhysicsExperimental AnalysisComputer EngineeringInverse ProblemsNumerical Method For Partial Differential EquationFinite Element MethodNumerical Dispersion FormulaNatural SciencesSpectroscopyApplied Physics
In this paper, a generalized derivation of the alternating direction implicit finite-difference time-domain algorithm based on operator splitting is proposed. The formulation follows the notation of the finite integration technique. A straightforward proof of stability is given and the numerical dispersion formula is presented and verified by numerical experiments. As an additional parasitic effect, the asymmetric behavior of the algorithm even for exactly symmetric setups is revealed. Both the dispersion error and the asymmetry error are discussed in terms of the applicability of ADI for low-frequency problems.
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