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Transport theory for a leaf canopy of finite-dimensional scattering centers

Journal of Quantitative Spectroscopy and Radiative TransferPublished 1 October 1991
Ranga B. Myneni, Alexander Marshak, Yuri Knyazikhin
Citations46
SJR quartileQ1
SJR score0.68
SNIP1.19

Abstract

A formalism for photon transport in leaf canopies with finite-dimensional scattering centers that cross shade mutually is developed. Starting from first principles, expressions for the interaction cross sections are derived. The problem of illumination by a monodirectional source is studied in detail using a successive collisions approach. A balance equation is formulated in R3 and the interaction between a leaf canopy and the adjacent atmosphere is discussed. Although the details are those relating to a leaf canopy, the formalism is equally applicable to other media where the constituents cross shade mutually such as planetary surfaces, rings and ridged-ice in polar regions, i.e., media that exhibit opposition brightening.

Keywords

Earth and Planetary SciencesEnvironmental Science