DocumentCode
1349224
Title
Far Field Subwavelength Source Resolution Using Phase Conjugating Lens Assisted With Evanescent-to-Propagating Spectrum Conversion
Author
Malyuskin, Oleksandr ; Fusco, Vincent
Author_Institution
Inst. of Electron. Commun. & Inf. Technol., Queens Univ. Belfast, Belfast, UK
Volume
58
Issue
2
fYear
2010
Firstpage
459
Lastpage
468
Abstract
The imaging properties of a phase conjugating lens operating in the far field zone of the imaged source and augmented with scatterers positioned in the source near field region are theoretically studied in this paper. The phase conjugating lens consists of a double sided 2D assembly of straight wire elements, individually interconnected through phase conjugation operators. The scattering elements are straight wire segments which are loaded with lumped impedance loads at their centers. We analytically and numerically analyze all stages of the imaging process; i) evanescent-to-propagating spectrum conversion; ii) focusing properties of infinite or finite sized phase conjugating lens; iii) source reconstruction upon propagating-to-evanescent spectrum conversion. We show that the resolution that can be achieved depends critically on the separation distance between the imaged source and scattering arrangement, as well as on the topology of the scatterers used. Imaged focal widths of up to one-seventh wavelength are demonstrated. The results obtained indicate the possibility of such an arrangement as a potential practical means for realising using conventional materials devices for fine feature extraction by electromagnetic lensing at distances remotely located from the source objects under investigation.
Keywords
feature extraction; image reconstruction; lenses; magnetic lenses; optical focusing; optical images; optical phase conjugation; electromagnetic lensing; evanescent-to-propagating spectrum conversion; far field subwavelength source resolution; feature extraction; focusing property; imaging property; lumped impedance load; phase conjugating lens; scattering elements; source reconstruction; straight wire elements; Assembly; Electromagnetic scattering; Focusing; Image analysis; Image converters; Image reconstruction; Image segmentation; Impedance; Lenses; Wire; Array; diffraction limit; evanescent field; microwave imaging; phase conjugation; subwavelength resolution;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2009.2037713
Filename
5345782
Link To Document