DocumentCode
1211048
Title
Reflection characteristics of a PML with a shallow corrugation
Author
Inchaussandague, Marina E. ; Gigli, Miriam L. ; Depine, Ricardo A.
Author_Institution
Grupo de Electromagnetismo Aplicado, Univ. de Buenos Aires, Argentina
Volume
51
Issue
6
fYear
2003
fDate
6/1/2003 12:00:00 AM
Firstpage
1691
Lastpage
1695
Abstract
The constitutive characteristics of anisotropic materials can be exploited to construct absorbers that provide reflectionless interfaces for waves at arbitrary angles of incidence. In this paper, we investigate how a weak corrugation affects the reflectivity of the anisotropic perfectly matched absorber developed by Sacks et al. (1995) for a flat interface. To do so, we develop a Rayleigh method to calculate the fields diffracted at the periodically corrugated boundary of an anisotropic absorber with constant constitutive tensors, which correspond to a planar (Cartesian) perfectly matched layer. We present numerical results in the nondiffractive regime (where only a specularly reflected wave can propagate) for sinusoidal corrugations with different groove height-to-period ratios. Our results show that the reflectivity of the anisotropic absorber near normal incidence remains very low (less than 0.4% for a 10% modulation), whereas it changes dramatically near grazing incidences.
Keywords
anisotropic media; electromagnetic wave absorption; electromagnetic wave reflection; periodic structures; reflectivity; surface topography; PML; Rayleigh method; anisotropic absorbers; anisotropic materials; anisotropic perfectly matched absorber; anisotropy; diffracted fields; groove height-to-period ratios; near grazing incidence; near normal incidence; nondiffractive regime; perfectly matched layer; periodic corrugation; periodically corrugated boundary; reflection characteristics; reflectionless interfaces; reflectivity; scattering; shallow corrugation; sinusoidal corrugations; specularly reflected wave propagate; Anisotropic magnetoresistance; Diffraction; Electromagnetic scattering; Gratings; Helium; Perfectly matched layers; Rayleigh scattering; Reflection; Reflectivity; Tensile stress;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2003.812566
Filename
1201801
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