Nonstationary radiation field in an optically thick atmosphere

Physics – Optics

Scientific paper

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Atmospheric Optics, Atmospheric Scattering, Optical Thickness, Planetary Atmospheres, Radiant Flux Density, Radiation Distribution, Anisotropic Media, Asymptotic Properties, Brightness Distribution, Laplace Transformation, Reflectance

Scientific paper

An analysis is made of the asymptotic properties of a nonstationary radiation field in a planar homogeneous semiinfinite anisotropically scattering atmosphere at an arbitrary optical depth, as well as in an optically thick planetary atmosphere overlaying an isotropically reflecting surface with a given albedo of A less than 1. A Laplace transformation approach is used to obtain the time asymptotics. This involves the determination of the relationship between radiation intensity in the conservative nonstationary problem and the radiation intensity in the corresponding nonconservative stationary problem. Brightness wave propagation through a fixed depth in the medium is considered.

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