DocumentCode
986873
Title
Modified Spherical Wave Functions With Anisotropy Ratio: Application to the Analysis of Scattering by Multilayered Anisotropic Shells
Author
Qiu, Cheng-Wei ; Zouhdi, Saïd ; Razek, Adel
Author_Institution
SUPELEC, Gif-sur-Yvette
Volume
55
Issue
12
fYear
2007
Firstpage
3515
Lastpage
3523
Abstract
We describe a novel and rigorous vector eigenfunction expansion of electric-type Green´s dyadics for radially multi- layered uniaxial anisotropic media in terms of the modified spherical vector wave functions, which can take into account the effects of anisotropy ratio systematically. In each layer, the material constitutions e and epsiv macrmu macr are tensors and distribution of sources is arbitrary. Both the unbounded and scattering dyadic Green´s functions (DGFs) for rotationally uniaxial anisotropic media are derived in spherical coordinates (r, thetas, phi). The coefficients of scattering DGFs, based on the coupling recursive algorithm satisfied by the coefficient matrix, are derived and expressed in a compact form. With these DGFs obtained, the electromagnetic fields in each layer are straightforward once the current source is known. A specific model is proposed for the scattering and absorption characteristics of multilayered uniaxial anisotropic spheres, and some novel performance regarding anisotropy effects is revealed.
Keywords
eigenvalues and eigenfunctions; electromagnetic coupling; electromagnetic wave scattering; matrix algebra; tensors; vectors; coefficient matrix; coupling recursive algorithm; dyadic Green´s function; electromagnetic fields; multilayered anisotropic shell; scattering analysis; spherical wave function; tensor; Anisotropic magnetoresistance; Constitution; Eigenvalues and eigenfunctions; Electromagnetic fields; Electromagnetic scattering; Electromagnetic wave absorption; Helium; Mie scattering; Tensile stress; Wave functions; Anisotropic ratio; dyadic Green´s functions (DGFs); modified spherical wave functions; radially multilayered structures; recurrence matrix; scattering and absorption; vector eigenfunction expansion;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2007.910491
Filename
4388124
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