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High-frequency scattering from a wedge with impedance faces illuminated by a line source. I. Diffraction
70
Citations
13
References
1989
Year
EngineeringFar-field MeasurementImpedance WedgeCanonical ProblemSurface ReflectanceReflectanceI. DiffractionElectromagnetic WavePhysicsAntennaDiffractionClassical OpticsInverse Scattering TransformsLine SourceRadar ScatteringApplied PhysicsWave ScatteringLight ScatteringHigh-frequency ApproximationPlane WaveWater Surface ReflectanceDiffractive Optic
The canonical problem of evaluating the scattered field at a finite distance from the edge of an impedance wedge which is illuminated by a line source is considered. The presentation of the results is divided into two parts. In this first part, reciprocity and superposition of plane wave spectra are applied to the left far-field response of the wedge to a plane wave, to obtain exact expression for the diffracted field and the surface wave contributions. In addition, a high-frequency solution is given for the diffracted field contribution. Its expression, derived via a rigorous asymptotic procedure, has the same structure as that of the uniform geometrical theory of diffraction (UTD) solution for the field diffracted by a perfectly conducting wedge. This solution for the diffracted field explicitly exhibits reciprocity with respect to the direction of incidence and scattering.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
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