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The classical phenomenon of light scattering is one of the most studied t- ics in light-matter interaction and, even today, involves some controversial issues.
Light scattering by submicron spherical particles on semiconductor surfaces.- to Light Scattering from Microstructures.- Theory.- Heaviside Operational Calculus and Electromagnetic Image Theory.- Mathematical Methods for Data Inversion.- Mueller Matrices.- Scattering by Particles on Substrates. Numerical Methods.- Light Scattering from a Sphere Near a Plane Interface.- Electromagnetic Scattering by Cylindrical Objects on Generic Planar Substrates: Cylindrical-Wave Approach.- T-Matrix Method for Light Scattering from a Particle on or Near an Infinite Surface.- Scattering of Polarized Light.- Properties of a Polarized Light-Beam Multiply Scattered by a Rayleigh Medium.- Polarization and Depolarization of Light.- Statistics of the Scattered Light.- Polarisation Fluctuations in Light Scattered by Small Particles.- Intensity Statistics of the Light Scattered by Particles on Surfaces.- Applications.- Microstructures in Rough Metal Surfaces: Electromagnetic Mechanism in Surface-Enhanced Raman Spectroscopy.- Light Scattering by Particles and Defects on Surfaces: Semiconductor Wafer Inspection.- From Scattering to Waveguiding: Photonic Crystal Fibres.- The Angular Distribution of Light Emitted by Sonoluminescent Bubbles.- Light Scattering by Regular Particles on Flat Substrates.