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Laser Radar Study Using Resonance Absorption for Remote Detection Of Air PollutantsA laser radar using resonance absorption has an advantage of increased detection range and sensitivity compared with that achieved by Raman or resonance back scattering. In this paper, new laser radar system using resonance absorption is proposed and results obtained from this laser radar system are discussed. NO2, SO2 gas has an absorption spectrum at 4500 A and 3000 A respectively as shown in Fig. 1. A laser light including at least a set of an absorption peak (lambda)1 and a valley (lambda)2 is emitted into a pollutant atmosphere. The light reflected with a topographical reflector or an atmospheric Mie scattering as distributed reflectors is received and divided into two wavelength components (lambda)1 and (lambda)2. The laser radar system used in the investigation is shown in Fig', 2 and consists of a dye laser transmitter, an optical receiver with a special monochrometer and a digital processer. Table 1 shows the molecular constants of NO2, and SO2 and the dye laser used in this experiment. In this system, the absolute concentration of the pollutant gas can be measured in comparison with a standard gas cell. The concentration of NO2, SO2 as low as 0.1 ppm have been measured at 100 m depth resolution. For a 1 mJ laser output, the observable range of this system achieved up to 300 m using the distributed Mie reflector. The capability and technical limitation of the system will be discussed in detail.
Document ID
20160007609
Acquisition Source
Langley Research Center
Document Type
Conference Paper
Authors
Igarashi, Takashi
(Ministry of Posts and Telecommunications Tokyo, Japan)
Date Acquired
June 15, 2016
Publication Date
June 4, 1973
Publication Information
Publication: Fifth Conference on Laser Radar Studies of the Atmosphere, June 4-6, 1973, Hilton Inn, Williamsburg, Virginia: Conference Abstracts
Subject Category
Earth Resources And Remote Sensing
Meteorology And Climatology
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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