NASA NTRS · 19870007747
Effective medium approximation for effective propagation constant calculation in a dense random medium
Abstract
The effective medium approximation (EMA) formalism developed for scalar wave calculations in solid state physics is generalized to electromagnetic wave scattering in a dense random medium. Results are applied to compute the effective propagation constant in a dense medium involving discrete spherical scatterers. When compared with a common quasicrystalline approximation (QCA), it is found that EMA accounts for backward scattering and the effect of correlation among three scatterers which are not available in QCA. It is also found that there is not much difference in the calculated normalized phase velocity between the use of these two approximations. However, there is a significant difference in the computed effective loss tangent in a nonabsorptive random medium. The computed effective loss tangent using EMA and measurements from a snow medium are compared, showing good agreement.
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Zhu, P. Y., Fung, A. K.. 1986-08-01. Effective medium approximation for effective propagation constant calculation in a dense random medium. https://ntrs.nasa.gov/citations/19870007747
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