Detection and characterization of chemical aerosol using laser-trapping single-particle Raman spectroscopy

Detection and characterization of the presence of chemical agent aerosols in various complex atmospheric environments is an essential defense mission. Raman spectroscopy has the ability to identify chemical molecules, but there are limited numbers of photons detectable from single airborne aerosol p...

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Veröffentlicht in:Applied optics (2004) 2017-08, Vol.56 (23), p.6577-6582
Hauptverfasser: Kalume, Aimable, Beresnev, Leonid A, Santarpia, Joshua, Pan, Yong-Le
Format: Artikel
Sprache:eng
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Zusammenfassung:Detection and characterization of the presence of chemical agent aerosols in various complex atmospheric environments is an essential defense mission. Raman spectroscopy has the ability to identify chemical molecules, but there are limited numbers of photons detectable from single airborne aerosol particles as they are flowing through a detection system. In this paper, we report on a single-particle Raman spectrometer system that can measure strong spontaneous, stimulated, and resonance Raman spectral peaks from a single laser-trapped chemical aerosol particle, such as a droplet of the VX nerve agent chemical simulant diethyl phthalate. Using this system, time-resolved Raman spectra and elastic scattered intensities were recorded to monitor the chemical properties and size variation of the trapped particle. Such a system supplies a new approach for the detection and characterization of single airborne chemical aerosol particles.
ISSN:1559-128X
2155-3165
1539-4522
DOI:10.1364/ao.56.006577