DocumentCode
74418
Title
Reference-Plane-Invariant Effective Thickness and Electromagnetic Property Determination of Isotropic Metamaterials Involving Boundary Effects
Author
Hasar, Ugur Cem ; Barroso, Joaquim Jose ; Buldu, Gul ; Bute, Musa ; Kaya, Yunus ; Karacali, Tevhit ; Ertugrul, Mehmet
Author_Institution
Dept. of Electr. & Electron. Eng., Univ. of Gaziantep, Gaziantep, Turkey
Volume
21
Issue
4
fYear
2015
fDate
July-Aug. 2015
Firstpage
301
Lastpage
311
Abstract
It is well recognized that near-field effects become dominant when the metamaterial (MM) is in resonance. In addition, any inaccurate information of the location of reference planes, and the effective length can seriously affect the accuracy of retrieved electromagnetic properties of MMs. By considering all these issues, in this research paper, we propose a retrieval method for reference-plane invariant and thickness-independent determination of electromagnetic parameters of MM slabs involving boundary effects. Our method first accomplishes determination of effective length of MMs and calibration-plane factors using scattering parameter measurements, aside the resonance region, of two identical MMs with different lengths. Our method then incorporates near-field effects in accurate retrieval of electromagnetic properties of MMs. The method is verified by scattering parameters simulated for a homogeneous conventional material and a weakly or negligibly coupled inhomogeneous MM slab made by two metallic concentric split-ring-resonators. Consequences of an inaccurate information of reference-plane transformation factors and the value of effective lengths and of noninclusion of near field effects on the retrieved electromagnetic properties are thoroughly discussed by way of few examples to substantiate the accuracy of the proposed method.
Keywords
electromagnetic metamaterials; electromagnetic wave scattering; boundary effects; calibration-plane factors; coupled inhomogeneous metamaterial slab; electromagnetic property; homogeneous conventional material; isotropic metamaterials; metallic concentric split-ring-resonators; near-field effects; reference-plane transformation factors; reference-plane-invariant effective thickness; resonance region; retrieval method; scattering parameter measurements; Educational institutions; Electromagnetic scattering; Electromagnetics; Length measurement; Materials; Scattering parameters; Slabs; Reference-plane invariant; boundary effects; metamaterials; thickness-independent;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2014.2358565
Filename
6901239
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