Absorption and Scattering of Light by Small ParticlesAbsorption and Scattering of Light by Small Particles Treating absorption and scattering in equal measure, this self-contained, interdisciplinary study examines and illustrates how small particles absorb and scatter light. The authors emphasize that any discussion of the optical behavior of small particles is inseparable from a full understanding of the optical behavior of the parent material-bulk matter. To divorce one concept from the other is to render any study on scattering theory seriously incomplete. Special features and important topics covered in this book include: * Classical theories of optical properties based on idealized models * Measurements for three representative materials: magnesium oxide, aluminum, and water * An extensive discussion of electromagnetic theory * Numerous exact and approximate solutions to various scattering problems * Examples and applications from physics, astrophysics, atmospheric physics, and biophysics * Some 500 references emphasizing work done since Kerker's 1969 work on scattering theory * Computer programs for calculating scattering by spheres, coated spheres, and infinite cylinders |
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Page xii
... Crystal Haloes Notes and Comments Chapter 8. A Potpourri of Particles, 181 Coated Sphere Anisotropic Sphere Optically Active Particles Infinite Right Circular Cylinder Inhomogeneous Particles: Average Dielectric Function A Survey of ...
... Crystal Haloes Notes and Comments Chapter 8. A Potpourri of Particles, 181 Coated Sphere Anisotropic Sphere Optically Active Particles Infinite Right Circular Cylinder Inhomogeneous Particles: Average Dielectric Function A Survey of ...
Page 38
... crystal are shown in Fig. 2.8, where optical density, defined as log,0(1/Tshb), is plotted as a function of wavelength. Note that in the vicinity of the absorption band at about 6000 A the interference bands are damped somewhat. If 6 ...
... crystal are shown in Fig. 2.8, where optical density, defined as log,0(1/Tshb), is plotted as a function of wavelength. Note that in the vicinity of the absorption band at about 6000 A the interference bands are damped somewhat. If 6 ...
Page 39
... crystal (h = 6.3 urn, rt1 = 2.68) measured with a Cary 14 spectrophotometer (M = 5 A). contains the implicit requirement that 8h << A/4n,, where 8h is the average departure from parallelism of the faces of the slab over the area ...
... crystal (h = 6.3 urn, rt1 = 2.68) measured with a Cary 14 spectrophotometer (M = 5 A). contains the implicit requirement that 8h << A/4n,, where 8h is the average departure from parallelism of the faces of the slab over the area ...
Page 118
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absorbing absorption bands absorption spectrum aerosols aluminum amplitude scattering matrix angular anisotropic approximation arbitrary atmospheric axis backscattering bulk calculations Chapter circular polarization components computed crystals curves cylinder detector dielectric function dipole discussed droplets effects electric field electromagnetic electron ellipsoid equations example extinction Figure forward direction geometrical optics homogeneous imaginary incident light infrared interstellar irradiance isotropic light scattered linear polarization measurements medium metallic microwave Mie theory noctilucent clouds nonabsorbing nonspherical particles normal obtained optical constants optical properties oscillators peak perpendicular phase photon plane wave Poynting vector problem quartz radius randomly oriented Rayleigh reflectance refractive index region relations ripple structure sample scattered field scattered light scattering angle scattering coefficients scattering matrix scattering matrix elements scattering plane shape shown in Fig slab small particles solid spectra spectrum sphere spheroids Stokes parameters surface mode symmetry theory tion transmission transmitted ultraviolet unpolarized light vector vibration wavelength