DocumentCode
1503299
Title
Enhanced Periodic Structure Analysis Based on a Multiconductor Transmission Line Model and Application to Metamaterials
Author
Bongard, Frédéric ; Perruisseau-Carrier, Julien ; Mosig, Juan R.
Author_Institution
Lab. of Electromagn. & Acoust. (LEMA), Ecole Polytech. Federate de Lausanne (EPFL), Lausanne, Switzerland
Volume
57
Issue
11
fYear
2009
Firstpage
2715
Lastpage
2726
Abstract
We propose to model periodic structures by equivalent multiconductor transmission lines (MTLs). The developed technique is based on a multimodal representation of the periodic structure unit cell, such as required for periodically loaded MTLs and periodically loaded waveguides with higher order evanescent mode interaction between cells. Compared to commonly employed periodic structure analyses which only provide the dispersion diagram, the proposed method provides all the parameters needed to accurately model the excitation and matching of finite-size periodic structures. The usefulness of the method is illustrated by means of two examples of negative-refractive-index metamaterials. First, a loaded MTL known as the shielded mushroom is analyzed. The proposed technique allows addressing the fundamental issue of the excitation of the different propagating Bloch modes supported by such a structure. Second, a split-ring resonator and wire metamaterial is analyzed. The method is shown to accurately represent the coupling between cells, thereby providing an enhanced design tool compared to the dominant-mode analysis usually employed for this type of metamaterials.
Keywords
metamaterials; multiconductor transmission lines; periodic structures; waveguides; Bloch mode; dispersion diagram; dominant-mode analysis; equivalent multiconductor transmission lines; evanescent mode interaction; finite-size periodic structure; multiconductor transmission line model; multimodal representation; negative-refractive-index metamaterials; periodic structure analysis; periodic structure unit cell; periodically loaded waveguides; shielded mushroom; split-ring resonator; wire metamaterial; Dispersion diagram; metamaterials; multiconductor transmission lines (MTLs); negative refraction; periodic structures; periodically loaded waveguides (WGs);
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2009.2032482
Filename
5290127
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