THz imaging and sensing for security applicationsexplosives, weapons and drugs
Identifieur interne : 000899 ( Main/Exploration ); précédent : 000898; suivant : 000900THz imaging and sensing for security applicationsexplosives, weapons and drugs
Auteurs : John F. Federici [États-Unis] ; Brian Schulkin [États-Unis] ; Feng Huang [États-Unis] ; Dale Gary [États-Unis] ; Robert Barat [États-Unis] ; Filipe Oliveira [États-Unis] ; David Zimdars [États-Unis]Source :
- Semiconductor Science and Technology [ 0268-1242 ] ; 2005.
Abstract
Over the past 5 years, there has been a significant interest in employing terahertz (THz) technology, spectroscopy and imaging for security applications. There are three prime motivations for this interest (a) THz radiation can detect concealed weapons since many non-metallic, non-polar materials are transparent to THz radiation (b) target compounds such as explosives and illicit drugs have characteristic THz spectra that can be used to identify these compounds and (c) THz radiation poses no health risk for scanning of people. In this paper, stand-off interferometric imaging and sensing for the detection of explosives, weapons and drugs is emphasized. Future prospects of THz technology are discussed.
Url:
DOI: 10.1088/0268-1242/20/7/018
Affiliations:
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<front><div type="abstract">Over the past 5 years, there has been a significant interest in employing terahertz (THz) technology, spectroscopy and imaging for security applications. There are three prime motivations for this interest (a) THz radiation can detect concealed weapons since many non-metallic, non-polar materials are transparent to THz radiation (b) target compounds such as explosives and illicit drugs have characteristic THz spectra that can be used to identify these compounds and (c) THz radiation poses no health risk for scanning of people. In this paper, stand-off interferometric imaging and sensing for the detection of explosives, weapons and drugs is emphasized. Future prospects of THz technology are discussed.</div>
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