DocumentCode :
1354484
Title :
Extraordinary Transmission Through Arrays of Slits: A Circuit Theory Model
Author :
Medina, Francisco ; Mesa, Francisco ; Skigin, Diana C.
Author_Institution :
Dept. of Electron. & Electromagn., Univ. of Seville, Seville, Spain
Volume :
58
Issue :
1
fYear :
2010
Firstpage :
105
Lastpage :
115
Abstract :
Extraordinary transmission and other interesting related phenomena for 1-D periodic arrays of slits (compound diffraction gratings) have recently been the object of intense research in the optics and solid state physics communities. This case should be differentiated from the extraordinary transmission through arrays of small apertures on metal screens since small holes only support below-cutoff modes, whereas slits can also support transverse electromagnetic modes without cutoff frequency. In this paper, an equivalent-circuit approach is proposed to account for the most relevant details of the behavior of slit-based periodic structures: extraordinary transmission peaks, Fabry-Perot resonances, and transmission dips observed in compound structures. The proposed equivalent-circuit model, based on well-established concepts of waveguide and circuit theory, provides a simple and accurate description of the phenomenon that is appropriate for educational purposes, as well as for the design of potential devices based on the behavior of the structures under study.
Keywords :
Fabry-Perot resonators; arrayed waveguide gratings; circuit theory; light transmission; optical communication equipment; periodic structures; Fabry-Perot resonances; circuit theory model; compound diffraction gratings; equivalent-circuit approach; extraordinary transmission peaks; periodic slit arrays; slit-based periodic structures; transmission dips; transverse electromagnetic modes; Extraordinary transmission; diffraction gratings; impedance matching; surface plasmon polaritons (SPPs);
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2009.2036341
Filename :
5352341
Link To Document :
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