Windowed Green function method for layered-media scattering
Document Type
Article
Publication Date
1-1-2016
Abstract
This paper introduces a new windowed Green function (WGF) method for the numerical integral-equation solution of problems of electromagnetic scattering by obstacles in the presence of dielectric or conducting half-planes. The WGF method, which is based on the use of smooth windowing functions and integral kernels that can be expressed directly in terms of the free-space Green function, does not require evaluation of expensive Sommerfeld integrals. The proposed approach is fast, accurate, flexible, and easy to implement. In particular, straightforward modifications of existing (accelerated or unaccelerated) integral-equation solvers suffice to incorporate the WGF capability. The method relies on a certain integral equation posed on the union of the boundary of the obstacle and a small flat section of the interface between the penetrable media. Our analysis and numerical experiments demonstrate that both the near- and far-field errors resulting from the proposed approach decrease faster than any negative power of the window size. In the examples considered in this paper the proposed method is up to thousands of times faster, for a given accuracy, than a corresponding method based on use of Sommerfeld integrals.
Identifier
84992649492 (Scopus)
Publication Title
SIAM Journal on Applied Mathematics
External Full Text Location
https://doi.org/10.1137/15M1033782
ISSN
00361399
First Page
1871
Last Page
1898
Issue
5
Volume
76
Grant
1312169
Fund Ref
National Science Foundation
Recommended Citation
Bruno, Oscar P.; Lyon, Mark; Pérez-Arancibia, Carlos; and Turc, Catalin, "Windowed Green function method for layered-media scattering" (2016). Faculty Publications. 10920.
https://digitalcommons.njit.edu/fac_pubs/10920
