DocumentCode :
56886
Title :
Near Field Enhancement and Subwavelength Imaging Using Resonantly Loaded Apertures
Author :
Malyuskin, Oleksandr ; Fusco, Vincent
Author_Institution :
Inst. of Electron., Commun. & Inf. Technol., Queen´s Univ. Belfast, Belfast, UK
Volume :
62
Issue :
6
fYear :
2014
fDate :
Jun-14
Firstpage :
3130
Lastpage :
3140
Abstract :
It is demonstrated that the electromagnetic (EM) transmission through a subwavelength or non-resonant aperture in a conductive screen can be dramatically enhanced by loading it with folded metallic strips exhibiting resonant properties. When illuminated by an EM plane wave these loaded apertures enable very tight, subwavelength, collimation of the EM power in the near field zone. We propose planar and quasi-planar resonant insertion geometries that should allow, for the first time, two-dimensional dual-polarization subwavelength field confinement along with ability to focus both electric and magnetic fields. The proposed technique for resonance transmission enhancement and near field confinement forms a basis for a new class of microwave near field imaging probe with subwavelength resolution capable of operating over a wide range of imaging distances (0.05-0.25λ). Measurement results demonstrate the possibility of high contrast (more than 3 dB in amplitude and 40 degrees in phase) near field subwavelength imaging of 2D and 3D resonant and non-resonant metallic and dielectric targets in free space and in moderately lossy layered media.
Keywords :
electromagnetic wave polarisation; electromagnetic wave scattering; microwave imaging; 2D resonant imaging; 3D resonant imaging; EM plane wave; EM power collimation; EM transmission; conductive screen; dielectric target imaging; electric fields; electromagnetic transmission; folded metallic strips; lossy layered media; magnetic fields; microwave near field imaging probe; near field confinement enhancement; near field subwavelength imaging; nonresonant aperture; nonresonant metallic imaging; planar resonant insertion geometry; quasiplanar resonant insertion geometry; resonance transmission enhancement; resonant properties; resonantly loaded apertures; subwavelength resolution; two-dimensional dual-polarization subwavelength field confinement; Apertures; Geometry; Image resolution; Microwave imaging; Probes; Strips; Enhanced transmission; focusing; near field enhancement; resonance; sub-diffraction imaging; subwavelength aperture;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2014.2314488
Filename :
6781014
Link To Document :
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