A new approach of the adding method for the computations of emergent radiation of an inhomogeneous plane-parallel planetary atmosphere

Astronomy and Astrophysics – Astrophysics

Scientific paper

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Atmospheric Radiation, Electromagnetic Scattering, Planetary Atmospheres, Polarized Electromagnetic Radiation, S Matrix Theory, Addition, Atmospheric Scattering, Bouguer Law, Chandrasekhar Equation, Diffuse Radiation, Electromagnetic Wave Transmission, Inhomogeneity, Integral Equations, Invariance, Iterative Solution, Wave Reflection

Scientific paper

The procedure of computing the intensity and the polarization parameters of radiation that is diffusely reflected and transmitted by an inhomogeneous plane-parallel planetary atmosphere is discussed on the basis of the adding method. If the atmosphere is simulated by a number of homogeneous sublayers (aerosols and ozone may be included), the matrices of radiation that is diffusely reflected and transmitted by the atmosphere can be expressed in terms of these sublayer matrices using coupled iterative equations with the polarity effect of radiation taken into account. This procedure can be extended to a model atmosphere bounded by a surface reflector with a quite arbitrary phase matrix.

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