DocumentCode
853956
Title
Negative refraction, growing evanescent waves, and sub-diffraction imaging in loaded transmission-line metamaterials
Author
Grbic, Anthony ; Eleftheriades, George V.
Author_Institution
Edward S. Rogers Sr. Dept. of Electr. & Comput. Eng., Univ. of Toronto, Ont., Canada
Volume
51
Issue
12
fYear
2003
Firstpage
2297
Lastpage
2305
Abstract
We present an analytical formulation that shows the negative refraction of propagating waves and the growth of evanescent waves within a negative refractive index (NRI) lens made of a periodically L, C loaded transmission-line (TL) network, referred to as the dual-TL structure. A transformation known as the "array scanning method" is then employed to analytically demonstrate the sub-diffraction imaging capability of a dual-TL lens. In essence, the two-dimensional (2-D) periodic Green\´s functions corresponding to the voltages and currents excited by a vertical elementary current source are derived. The developed theory is utilized to plot the 2-D voltage magnitude distribution for the case of focusing an elementary current source. The analysis reveals that a resolution limit is imposed by the periodicity of the NRI medium used. Moreover, the periodicity of the NRI medium bounds the amplitude of the growing evanescent waves in a realizable NRI lens and prevents them from growing to unphysically large values.
Keywords
Green´s function methods; electromagnetic wave propagation; refractive index; transmission lines; C loaded transmission line network; L loaded transmission line network; array scanning method; dual transmission line structure; elementary current source; evanescent waves; negative refractive index; subdiffraction imaging; transmission-line metamaterials; two-dimensional periodic Green´s functions; wave propagation; Focusing; Lenses; Metamaterials; Optical materials; Permittivity; Refractive index; Slabs; Transmission lines; Two dimensional displays; Voltage;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2003.820162
Filename
1256761
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