Title of article
ON THE SCATTERING OF ELECTROMAGNETIC WAVES BY A CHARGED SPHERE
Author/Authors
By J. Klacka and M. Kocifaj ، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2010
Pages
19
From page
17
To page
35
Abstract
Scattering of electromagnetic radiation by a charged homogeneous spherical particle/body is treated. Theoretical solution represents a generalization of the Mieʹs scattering theory for electrically neutral sphere. It is shown that classical and quantum physics approaches may lead to different conclusions, as documented by numerical computations assuming various permeabilities, refractive indices, surface charges, temperatures, and other physical parameters of the spherical particles. Two discrete wavelengths (5 μm and 1mm) of the incident radiation are considered. Optical properties of charged particles composed of absorbing and slightly absorbing materials can essentially differ. Especially, the resonance peaks typically occur when imaginary part of particle refractive index is low. The relative permeability of a material may differ from unity at large wavelengths, e.g., in microwave region. Basically, the relative permeability appears to be less important factor than the surface charge. However, the permeability can influence the scattering and extinction efficiencies, as well as the backscattering features of small particles, under some conditions.
Journal title
Progress In Electromagnetics Research
Serial Year
2010
Journal title
Progress In Electromagnetics Research
Record number
1052466
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