DocumentCode
1522902
Title
Terahertz Imaging Systems With Aperture Synthesis Techniques
Author
Krozer, Viktor ; Löffler, Torsten ; Dall, Jørgen ; Kusk, Anders ; Eichhorn, Finn ; Olsson, Rasmus Kjelsmark ; Buron, Jonas Due ; Jepsen, Peter Uhd ; Zhurbenko, Vitaliy ; Jensen, Thomas
Author_Institution
Electromagn. Syst., Tech. Univ. of Denmark, Copenhagen, Denmark
Volume
58
Issue
7
fYear
2010
fDate
7/1/2010 12:00:00 AM
Firstpage
2027
Lastpage
2039
Abstract
This paper presents the research and development of two terahertz imaging systems based on photonic and electronic principles, respectively. As part of this study, a survey of ongoing research in the field of terahertz imaging is provided focusing on security applications. Existing terahertz imaging systems are reviewed in terms of the employed architecture and data processing strategies. Active multichannel measurement method is found to be promising for real-time applications among the various terahertz imaging techniques and is chosen as a basis for the imaging instruments presented in this paper. An active system operation allows for a wide dynamic range, which is important for image quality. The described instruments employ a multichannel high-sensitivity heterodyne architecture and aperture filling techniques, with close to real-time image acquisition time. In the case of the photonic imaging system, mechanical scanning is completely obsolete. We show 2-D images of simulated 3-D image data for both systems. The reconstruction algorithms are suitable for 3-D real-time operation, only limited by mechanical scanning.
Keywords
submillimetre wave imaging; synthetic aperture radar; terahertz wave imaging; active multichannel measurement method; aperture synthesis techniques; electronic principles; mechanical scanning; photonic imaging system; photonic principles; terahertz imaging systems; Femtosecond systems; photonic detectors; photonic systems; submillimeter-wave imaging; submillimeter-wave technology; synthetic aperture imaging; synthetic aperture radar; terahertz imaging;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2010.2050246
Filename
5492290
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