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  4. First results of a QCL-OPA based standoff system, for detecting hazardous substances in the IR-fingerprint domain
 
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2018
Conference Paper
Title

First results of a QCL-OPA based standoff system, for detecting hazardous substances in the IR-fingerprint domain

Abstract
Within the framework of the first European Defence Agency (EDA) call for protection against chemical, biological, radiological and nuclear threats (CBRN Protection) we established a project on active multispectral reflection fingerprinting of persistent chemical agents (AMURFOCAL). A first paper on the project AMURFOCAL has been issued last year on the SPIE conference in Warsaw, Poland. This follow up paper will be accompanied by an additional paper that deals specifically with the aspect of the 100 W-level peak power laser system tunable in the LWIR. In order to close a capability gap and to achieve detection at stand-off distances our consortium built a high peak power pulsed laser system with fast tunability from 8 to 10 mm using an external-cavity quantum cascade laser and optical parametric amplification. This system had to be tested against different substances on various surfaces with different angles of inclination to evaluate the ability for an active stand-off technology with an eye-safe laser system to detect small amounts of hazardous substances and residues. The scattered light from the background surface interferes with the signal originating from the persistent chemicals. To account for this additional difficulty new software based on neutral networks was developed for evaluation. The paper describes the basic setup of the instrument and the experiments as well as some first results for this technology.
Author(s)
Wilsenack, Frank
Wehrwissenschaftliches Institut für Schutztechnologien - ABC-Schutz
Lorenzen, Arne
Wehrwissenschaftliches Institut für Schutztechnologien - ABC-Schutz
Brygo, François
Bertin Technologies, France
Awanzino, Cédric
Bertin Technologies, France
Gutty, Francois
Thales Research & Technology France
Grisard, Arnaud
Thales Research & Technology France
Larat, Christian
Thales Research & Technology France
Papillon, Dominique
Thales Research & Technology France
Schwarz, Muriel
Thales Research & Technology France
Lallier, Eric
Thales Research & Technology France
Tholl, Hans Dieter
Diehl Defence GmbH & Co.KG
Münzhuber, Franz
Diehl Defence GmbH & Co.KG
Kunz, Jürgen
Diehl Defence GmbH & Co.KG
Raab, Michael
Diehl Defence GmbH & Co.KG
Rattunde, Marcel  
Fraunhofer-Institut für Angewandte Festkörperphysik IAF  
Hugger, Stefan  orcid-logo
Fraunhofer-Institut für Angewandte Festkörperphysik IAF  
Kastek, Mariusz
Military University of Technology, Poland
Piatkowski, Tadeusz
Military University of Technology, Poland
Mainwork
Chemical, Biological, Radiological, Nuclear, and Explosives (CBRNE) Sensing XIX  
Conference
Conference "Chemical, Biological, Radiological, Nuclear, and Explosives Sensing" 2018  
Conference "Defense and Security" 2018  
Conference "Defense and Commercial Sensing" 2018  
DOI
10.1117/12.2314623
Language
English
Fraunhofer-Institut für Angewandte Festkörperphysik IAF  
Keyword(s)
  • remote sensing

  • stand-off detection

  • chemical warfare agent

  • toxic industrial chemicals

  • external cavity quantum cascade laser

  • optical parametric amplifier

  • Infrared detector

  • chemometrics

  • European Defence Agency

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