DocumentCode :
1456442
Title :
Confocal Ellipsoidal Reflector System for a Mechanically Scanned Active Terahertz Imager
Author :
Llombart, Nuria ; Cooper, Ken B. ; Dengler, Robert J. ; Bryllert, Tomas ; Siegel, Peter H.
Volume :
58
Issue :
6
fYear :
2010
fDate :
6/1/2010 12:00:00 AM
Firstpage :
1834
Lastpage :
1841
Abstract :
We present the design of a reflector system that can rapidly scan and refocus a terahertz beam for high-resolution standoff imaging applications. The proposed optical system utilizes a confocal Gregorian geometry with a small mechanical rotating mirror and an axial displacement of the feed. For operation at submillimeter wavelengths and standoff ranges of many meters, the imaging targets are electrically very close to the antenna aperture. Therefore the main reflector surface must be an ellipse, instead of a parabola, in order to achieve the best imaging performance. Here we demonstrate how a simple design equivalence can be used to generalize the design of a Gregorian reflector system based on a paraboloidal main reflector to one with an ellipsoidal main reflector. The system parameters are determined by minimizing the optical path length error, and the results are validated with numerical simulations from the commercial antenna software package GRASP. The system is able to scan the beam over 0.5 m in cross-range at a 25 m standoff range with less than 1% increase of the half-power beam-width.
Keywords :
aperture antennas; optical elements; optical images; reflector antennas; scanning antennas; terahertz wave imaging; aperture antenna; confocal Gregorian geometry; confocal ellipsoidal reflector system; mechanically scanned active terahertz imager; standoff imaging applications; Aperture antennas; Apertures; Biomedical optical imaging; Clothing; Frequency; High-resolution imaging; Image resolution; Laboratories; Millimeter wave technology; Optical imaging; Propulsion; Radar antennas; Radar imaging; Signal resolution; Space technology; Reflector antennas; THz; scanning antennas; submillimeter-wavelength imaging; terahertz radar;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2010.2046860
Filename :
5439798
Link To Document :
بازگشت