Radar cross sections of dielectric or plasma coated conducting spheres and circular cylinders
- 1 September 1963
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Transactions on Antennas and Propagation
- Vol. 11 (5) , 558-569
- https://doi.org/10.1109/tap.1963.1138087
Abstract
Radar cross sections for a variety of spherical and cylindrical scatterers having homogeneous dielectric or plasma shells are obtained by using both the exact boundary value solutions and approximate, semi-empirical methods based on physical principles. The plasma is assumed to have the macroscopic properties of a lossless dielectric with a permittivity less than that of free space. A superposition approximation for the radar cross section of a dielectric coated conducting body is obtained by considering the scattered field to be the phasor sum of two principal components, the field scattered by the air-dielectric interface and the field scattered by an equivalent conducting body which differs from the actual body because of the lens action of the shell. This approximation yields very good agreement with the exact solutions for both spherical and cylindrical dielectric clad scatterers with radii in the Rayleigh region and in the resonant region, and for bistatic scattering as well as for backscatter. The echo area of a conducting sphere with nonconcentric spherical dielectric shell calculated by means of the superposition approximation is in excellent agreement with experimental measurements, thus demonstrating the validity of this method in a case for which the exact solution cannot be obtained.Keywords
This publication has 6 references indexed in Scilit:
- BACKSCATTERING FROM A CONDUCTING CYLINDER WITH A SURROUNDING SHELLCanadian Journal of Physics, 1960
- Atmospheric drag on the satelliteJournal of Geophysical Research, 1957
- Backscattering from Dielectric-Coated Infinite Cylindrical ObstaclesJournal of Applied Physics, 1957
- Scattering from Dielectric Coated Spheres in the Region of the First ResonanceJournal of Applied Physics, 1954
- Scattering of Electromagnetic Waves from Two Concentric SpheresJournal of Applied Physics, 1951
- Beiträge zur Optik trüber Medien, speziell kolloidaler MetallösungenAnnalen der Physik, 1908