Applied Optics · 2001 · 102 citations · 20 references
RadarElectromagnetic WaveEngineeringSpheroidal ParticlePhysicsOptical PropertiesAntennaWave ScatteringLight ScatteringHigh-frequency ApproximationBeam Transport SystemGaussian OpticsComputational ElectromagneticsLight Scattering SpectroscopyRayleigh ScatteringSpheroidal CoordinatesScattered Intensity DistributionBeam Optic
An approach to expanding a Gaussian beam in terms of the spheroidal wave functions in spheroidal coordinates is presented. The beam-shape coefficients of the Gaussian beam in spheroidal coordinates can be computed conveniently by use of the known expression for beam-shape coefficients, gn, in spherical coordinates. The unknown expansion coefficients of scattered and internal electromagnetic fields are determined by a system of equations derived from the boundary conditions for continuity of the tangential components of the electric and magnetic vectors across the surface of the spheroid. A solution to the problem of scattering of a Gaussian beam by a homogeneous prolate (or oblate) spheroidal particle is obtained. The numerical values of the expansion coefficients and the scattered intensity distribution for incidence of an on-axis Gaussian beam are given.
20
Light Scattering by a Spheroidal Particle
Shoji Asano, Giichi Yamamoto · Applied Optics · 1975 · 722 citations
Theory of electromagnetic beams
L. W. Davis · Physical review. A, General physics · 1979 · 649 citations
Light scattering by randomly oriented spheroidal particles
Shoji Asano, Makoto Sato · Applied Optics · 1980 · 313 citations