Standoff Detection of Highly Energetic Materials Using Laser-Induced Thermal Excitation of Infrared Emission
A laser-mediated methodology for standoff infrared detection of threat chemicals is described in this article. Laser-induced thermal emissions (LITE) from vibrationally excited residue of highly energetic material (HEM) deposited on substrates were detected remotely. Telescope-based Fourier transfor...
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Veröffentlicht in: | Applied spectroscopy 2015-05, Vol.69 (5), p.535-544 |
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Sprache: | eng |
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