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An anisotropic perfectly matched layer-absorbing medium for the truncation of FDTD lattices

IEEE Transactions on Antennas and Propagation · 1996 · Vol. 44(12) · pp. 1630–1639
Stephen D. Gedney

Abstract

A perfectly matched layer (PML) absorbing material composed of a uniaxial anisotropic material is presented for the truncation of finite-difference time-domain (FDTD) lattices. It is shown that the uniaxial PML material formulation is mathematically equivalent to the perfectly matched layer method published by Berenger (see J. Computat. Phys., Oct. 1994). However, unlike Berenger's technique, the uniaxial PML absorbing medium presented in this paper is based on a Maxwellian formulation. Numerical examples demonstrate that the FDTD implementation of the uniaxial PML medium is stable, equal in effectiveness as compared to Berenger's PML medium, while being more computationally efficient.

Electromagnetic Simulation and Numerical MethodsElectromagnetic Scattering and AnalysisLightning and Electromagnetic PhenomenaPerfectly matched layerFinite-difference time-domain methodTruncation (statistics)AnisotropyFinite difference methodMathematical analysisMathematicsPhysicsOptics
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References
A perfectly matched layer for the absorption of electromagnetic waves
Journal of Computational Physics · 1994 · 9,855 citations
A perfectly matched anisotropic absorber for use as an absorbing boundary condition
IEEE Transactions on Antennas and Propagation · 1995 · 1,043 citations
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