Electromagnetism, Optics, Acoustics, Heat Transfer, Classical Mechanics, and Fluid Dynamics

An iterative analytic—numerical method for scattering from a target buried beneath a rough surface

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Published 17 September 2014 2014 Chinese Physical Society and IOP Publishing Ltd
, , Citation Xu Run-Wen et al 2014 Chinese Phys. B 23 114101 DOI 10.1088/1674-1056/23/11/114101

1674-1056/23/11/114101

Abstract

An efficiently iterative analytical—numerical method is proposed for two-dimensional (2D) electromagnetic scattering from a perfectly electric conducting (PEC) target buried under a dielectric rough surface. The basic idea is to employ the Kirchhoff approximation (KA) to accelerate the boundary integral method (BIM). Below the rough surface, an iterative system is designed between the rough surface and the target. The KA is used to simulate the initial field on the rough surface based on the Fresnel theory, while the target is analyzed by the boundary integral method to obtain a precise result. The fields between the rough surface and the target can be linked by the boundary integral equations below the rough surface. The technique presented here is highly efficient in terms of computational memory, time, and versatility. Numerical simulations of two typical models are carried out to validate the method.

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10.1088/1674-1056/23/11/114101