Title of article
Attenuation and impulse response for multiple scattering of light in atmospheric clouds and aerosols
Author/Authors
Selden، Adrian C. نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
-3143
From page
3144
To page
0
Abstract
Model phase functions for atmospheric clouds and aerosols typically comprise a narrow forward lobe (corona), a broad diffuse background, and a narrow backscattering peak (glory), which can reach relatively high values, especially for polyhedral scattering particles, such as hexagonal ice columns and plates. The influence of these three major components on the asymptotic and transient attenuation of the scattered light is compared for several analytic phase functions to assess the dependence of radiative transfer in clouds and aerosols on the choice of phase function. The impulse response (temporal evolution of the angular intensity distribution) is sensitive to the higher moments of the phase function and could prove to be a useful technique for inferring the optical scattering parameters of clouds and aerosols.
Keywords
atmospheric VOC , inhibition of S(IV) autoxidation , isoprene , Sulphur dioxide , isoprene oxidation
Journal title
Applied Optics
Serial Year
2006
Journal title
Applied Optics
Record number
75522
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