DocumentCode :
1303639
Title :
Off-Axis Gaussian Beam Scattering by an Anisotropic Coated Sphere
Author :
Wu, Zhen-Sen ; Li, Zheng-Jun ; Li, Huan ; Yuan, Qiong-Kun ; Li, Hai-Ying
Author_Institution :
Sch. of Sci., Xidian Univ., Xi´´an, China
Volume :
59
Issue :
12
fYear :
2011
Firstpage :
4740
Lastpage :
4748
Abstract :
An analytical solution to the scattering of an off-axis Gaussian beam incident on an anisotropic coated sphere is proposed. Based on the local approximation of the off-axis beam shape coefficients, the field of the incident Gaussian beam is expanded using first spherical vector wave functions. By introducing the Fourier transform, the electromagnetic fields in the anisotropic layer are expressed as the addition of the first and the second spherical vector wave functions. The expansion coefficients are analytically derived by applying the continuous tangential boundary conditions to each interface among the internal isotropic dielectric or conducting sphere, the anisotropic shell, and the free space. The influence of the beam widths, the beam waist center positioning, and the size parameters of the spherical structure on the field distributions are analyzed. The applications of this theoretical development in the fields of biomedicine, target shielding, and anti-radar coating are numerically discussed. The accuracy of the theory is verified by comparing the numerical results reduced to the special cases of a plane wave incidence and the case of a homogeneous anisotropic sphere with results from a CST simulation and references.
Keywords :
Fourier transforms; Gaussian processes; biomedical engineering; electromagnetic fields; electromagnetic wave scattering; CST simulation; Fourier transform; anisotropic coated sphere; anisotropic layer; anisotropic shell; antiradar coating; beam waist center positioning; beam widths; biomedicine; conducting sphere; continuous tangential boundary condition; electromagnetic field; field distribution; homogeneous anisotropic sphere; incident Gaussian beam; internal isotropic dielectric sphere; off-axis Gaussian beam scattering; off-axis beam shape coefficient approximation; plane wave incidence; size parameters; spherical structure; spherical vector wave function; target shielding; Anisotropic; Approximation methods; Beams; Electromagnetic scattering; Particle beams; Anisotropic layered; Gaussian beam; electromagnetic scattering; off-axis;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2011.2165489
Filename :
5993520
Link To Document :
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