Publication | Closed Access
Scattering of a Gaussian beam by an infinite cylinder with arbitrary location and arbitrary orientation: numerical results
69
Citations
31
References
1999
Year
Electromagnetic WaveEngineeringGaussian BeamWave OpticGeometrical OpticAntennaWave ScatteringCircular Gaussian BeamClassical OpticsLight ScatteringHigh-frequency ApproximationArbitrary LocationInverse Scattering TransformsGaussian OpticsInfinite Circular CylinderComputational ElectromagneticsArbitrary OrientationBeam Optic
We present numerical results concerning the properties of the electromagnetic field scattered by an infinite circular cylinder illuminated by a circular Gaussian beam. The cylinder is arbitrarily located and arbitrarily oriented with respect to the illuminating Gaussian beam. Numerical evaluations are provided within the framework of a rigorous electromagnetic theory, the generalized Lorenz-Mie theory, for infinite cylinders. This theory provides new insights that could not be obtained from older formulations, i.e., geometrical optics and plane-wave scattering. In particular, some emphasis is laid on the waveguiding effect and on the rainbow phenomenon whose fine structure is hardly predictable by use of geometrical optics.
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