scholarly journals A proof that multiple waves propagate in ensemble-averaged particulate materials

Author(s):  
Artur L. Gower ◽  
I. David Abrahams ◽  
William J. Parnell

Effective medium theory aims to describe a complex inhomogeneous material in terms of a few important macroscopic parameters. To characterize wave propagation through an inhomogeneous material, the most crucial parameter is the effective wavenumber . For this reason, there are many published studies on how to calculate a single effective wavenumber. Here, we present a proof that there does not exist a unique effective wavenumber; instead, there are an infinite number of such (complex) wavenumbers. We show that in most parameter regimes only a small number of these effective wavenumbers make a significant contribution to the wave field. However, to accurately calculate the reflection and transmission coefficients, a large number of the (highly attenuating) effective waves is required. For clarity, we present results for scalar (acoustic) waves for a two-dimensional material filled (over a half-space) with randomly distributed circular cylindrical inclusions. We calculate the effective medium by ensemble averaging over all possible inhomogeneities. The proof is based on the application of the Wiener–Hopf technique and makes no assumption on the wavelength, particle boundary conditions/size or volume fraction. This technique provides a simple formula for the reflection coefficient, which can be explicitly evaluated for monopole scatterers. We compare results with an alternative numerical matching method.

2015 ◽  
Vol 93 (8) ◽  
pp. 846-849
Author(s):  
Muhammad Raza

We studied the electric and magnetic responses from the infinite chain of circular metallic cylinders periodically engrossed in a dielectric matrix (wax). The study used the effective medium theory developed for the long-wavelength approximations of complex effective constants. The analytical results show that the presented metamaterial exhibits the phenomenon with negative effective parameters. Moreover, increase in volume fraction increases the negativity of the effective parameters. With an increase in gigahertz (GHz) frequencies, the effective dielectric constant approaches zero, and a minor increase in the negativity of the effective magnetic constant is observed.


1987 ◽  
Vol 109 (3) ◽  
pp. 252-256 ◽  
Author(s):  
Minoru Taya ◽  
Naoki Ueda

The in-plane electrical conductivity of a misoriented short fiber composite was studied both by fiber percolation model (FPM) and effective medium theory (EMT). A misoriented short fiber composite consists of insulating matrix and conductive short fibers, thus it exhibits a threshold behavior in the conductivity at a certain volume fraction of fibers. A comparison between FPM and EMT indicates that FPM can predict the threshold behavior well, while EPT fails, but it becomes valid at high volume fraction of fibers.


1993 ◽  
Vol 73 (7) ◽  
pp. 3441-3445 ◽  
Author(s):  
Herbert Überall ◽  
Barbara F. Howell ◽  
Earl L. Diamond

1991 ◽  
Vol 3 (40) ◽  
pp. 7757-7762 ◽  
Author(s):  
H Hakkinen ◽  
J Mansikka-aho ◽  
M Manninen

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