DocumentCode :
152219
Title :
Electromagnetic wave interaction with 3D arrays of quadrupolar inclusions
Author :
Askarpour, A.N. ; Alu, Andrea
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Texas at Austin, Austin, TX, USA
fYear :
2014
fDate :
6-11 July 2014
Firstpage :
163
Lastpage :
163
Abstract :
In the homogenization of metamaterials, one of the important challenges yet to be fully resolved resides in the proper modeling of the influence of higher-order multipolar terms describing the basic constituent inclusions. As an important step in this direction, we consider here a metamaterial composed of a three-dimensional cubic array of purely quadrupolar inclusions, with zero electric and magnetic dipole moments, so that the leading term in their multipole expansion is the electric quadrupole moment. Applying a first-principle homogenization approach similar to (A. Alù, Phys. Rev. B, 84, 075153, 2011) the spatially dispersive permittivity of such an array in the long-wavelength limit is derived. This tensorial permittivity is a quadratic function of the propagation constant in the medium and it is shown to depend on the propagation direction, as a symptom of strong spatial dispersion.
Keywords :
computational electromagnetics; electromagnetic wave polarisation; electromagnetic wave propagation; electromagnetic wave scattering; metamaterials; electric quadrupole moment; electromagnetic wave interaction; first-principle homogenization approach; higher-order multipolar terms; long-wavelength limit; magnetic dipole moments; metamaterial; metamaterials homogenization; propagation constant quadratic function; quadrupolar inclusion 3D arrays; tensorial permittivity; zero electric moments; Dispersion; Magnetic materials; Magnetic moments; Magnetic resonance; Metamaterials; Propagation constant; Slabs;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radio Science Meeting (Joint with AP-S Symposium), 2014 USNC-URSI
Conference_Location :
Memphis, TN
Type :
conf
DOI :
10.1109/USNC-URSI.2014.6955545
Filename :
6955545
Link To Document :
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