DocumentCode
1952307
Title
Scattering of an electromagnetic beam by a radially inhomogeneous sphere
Author
Khaled, EIsayed Esam M ; Salem, Mohamed Fouad
Author_Institution
Electr. & Comput. Eng. Dept., Assiut Univ., Egypt
fYear
2000
fDate
2000
Abstract
A method to calculate the scattering intensities of a multilayered sphere or a radially inhomogeneous sphere is presented. The sphere is illuminated with an electromagnetic wave of an arbitrary spatial distribution. The radially inhomogeneous sphere is modeled by a multilayered sphere. The method uses the technique presented by Wu and Wang (1991) and by Johnson (see Appl. Opt., vol.35, p.3285-96, 1996) to calculate the scattering coefficients of a multilayered sphere and a method that represent an arbitrary incident beam in terms of vector spherical harmonics (VSH). The presented method is used to calculate the backscattered and angular scattering intensities of a multilayered and a radially inhomogeneous spheres illuminated with a Gaussian beam. The method is capable of calculating the scattered field of any scatterer as long as its scattering coefficients are known. Also the method can be used for a tightly focused incident beam. The beam can be focused to an arbitrary position with respect to the sphere
Keywords
backscatter; electromagnetic fields; electromagnetic wave scattering; inhomogeneous media; EM beam scattering; Gaussian beam; angular scattering intensity; backscattered intensity; electromagnetic beam scattering; electromagnetic wave illuminated sphere; multilayered sphere; radially inhomogeneous sphere; scattered field; scattering coefficients; scattering intensities; spatial distribution; tightly focused incident beam; vector spherical harmonics; Beams; Blades; Blood; Chemical processes; Electromagnetic scattering; Lenses; Nonuniform electric fields; Particle scattering; Radar scattering; Refractive index;
fLanguage
English
Publisher
ieee
Conference_Titel
Radio Science Conference, 2000. 17th NRSC '2000. Seventeenth National
Conference_Location
Minufiya
Print_ISBN
977-5031-64-8
Type
conf
DOI
10.1109/NRSC.2000.838841
Filename
838841
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