DocumentCode :
1549849
Title :
Mastering the Propagation Through Stacked Perforated Plates: Subwavelength Holes vs. Propagating Holes
Author :
Navarro-Cía, M. ; Beruete, M. ; Falcone, F. ; Illescas, J.M. ; Campillo, I. ; Ayza, M. Sorolla
Author_Institution :
Millimeter & Terahertz Waves Lab., Univ. Publica de Navarra, Pamplona, Spain
Volume :
59
Issue :
8
fYear :
2011
Firstpage :
2980
Lastpage :
2988
Abstract :
More insight on the physics underlying the transmission through subwavelength hole arrays prism by comparing it with propagating hole arrays prism is provided. We show the critical role that the size of the holes plays in this electromagnetic propagation, changing the effective index of refraction from negative (backward wave) to positive values (forward wave) as the hole diameter increases. This causes negative refraction for the zeroth order emerging beam in the cut-off holes prism whereas positive refraction in the non-cut-off holes prism. Furthermore, we revisited from the perspective of superposition principle the explanation of these stacks based on the so-called building sub-units: horizontal rods and vertical wires. Our simple analysis reveals the drawbacks of this earlier interpretation, and reinforces the powerful model founded on a inverse transmission line. Experimental results (co- and cross-polar measurements) performed at the V-band of the millimeter-waves in the Fresnel zone are well supported by numerical analyses. As expected, higher order diffracted outgoing beams are recorded for the classical prism but not for the cut-off holes prism.
Keywords :
Fresnel diffraction; light propagation; light refraction; millimetre wave propagation; optical arrays; optical prisms; refractive index; Fresnel zone; classical prism; diffracted outgoing beam; electromagnetic propagation; inverse transmission line; millimeter wave; negative refraction; noncut-off holes prism; propagating hole arrays prism; propagation through stacked perforated plate; refraction index; subwavelength hole arrays prism; Dispersion; Electric fields; Indexes; Media; Metamaterials; Periodic structures; Wires; Extraordinary transmission; frequency selective surfaces; metamaterials; negative index of refraction; perforated plates;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2011.2158957
Filename :
5871297
Link To Document :
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