Vol. 3, issue 08, article # 7

pdf Kataev M. Yu., Mitsel' A. A., Tarasova S. R. Selection of the informative spectral sections for the solution of gas analysis problems with the help of an optoacoustic detector. // Atmospheric and oceanic optics. 1990. V. 3. No. 08. P. 763-771.
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Abstract:

An algorithm for selecting the informative spectral sections for an optoacoustic gas analyzer is presented. The algorithm is based on Bayes risk. The optimal spectral sections for different gaseous components in the lasing region of a CO2- laser are determined. The results are compared with published data.

References:

1. A.В. Antipov "The optoacoustic method in laser spectroscopy". Candidate’s Dissertation in Physical and Mathematical Sciences, Tomsk (1980),
2. M.Yu. Kataev and A.A. Mitsel, Avtometriya, No. 4, 15 (1985).
3. M.Yu. Kataev and A.A. Mitsel, in: Abstracts of Reports at the 8th All-Union Symposium on Laser and Acoustic Sounding of the Atmosphere, Institute of Atmospheric Optics, Siberian Branch of the Academy of Sciences of the USSR, Tomsk (1984), Pt. 1, pp. 331–333.
4. M.Yu. Kataev, A.A. Mitsel, and E.G. Tinchurina, Izv. Vyssh. Uchebn. Zaved. SSSR, Ser. Fiz. VINITI, No. 4063-85.
5. G.N. Glasov and V.M. Dubyagin, in: Optometeorological Investigations of the Earth’s Atmosphere, G.M. Krekov and V.S. Komarov, eds. [in Russian], (Nauka, Novosibirsk, 1987), pp. 119–131.
6. V.M. Dubyagin in: ibid, 131–137.
7. B.R. Levin, The Theoretical Foundations of Statistical Radio Engineering [in Russian] (Sov, Radio, Moscow, 1975), Pt 2.
8. K. Fukunaga, Introduction to the Statistical Theory of Image Recognition [Russian translation] (Nauka, Moscow, 1979).
9. P.L. Mayer and M.W. Sigrist, Air-pollution Monitoring with a Mobile CO2-Laser Photoacoustic System, Final Report SNFINFP 14. Project No. 4.684.0.83.14 CH-8093, Zurich (1988).
10. A.A. Mitsel and V.P. Rudenko, ’’LARA Pakage of applied computer programs for the calculation оf optical radiation losses in the atmosphere (1988 Version)", Preprint No. 57, Institute of Atmospheric Optics, Siberian Branch of the Academy of Sciences of the USSR, Tomsk (1988).
11. L.S. Rothman et al., Appl. Opt. 17, No. 15, 2247 (1983).
12. A. Mayer et al., Appl. Opt. 17, No. 3, 391 (1978).
13. R. Ratty et al., Appl. Opt. 13, No. 12, 2850 (1974).
14. J. Robinson et al., J. Spectr. Lett., No. 6(9), 569(1973).
15. G.S. Khmel’nitskii, ’’Sounding of gases in the atmosphere by the molecular absorption of tunable CO2-laser radiation, Candidate’s Dissertation in Physical and Mathematical Sciences, Tomsk (1979).
16. G.P. Anderson, S.A. Clough and F.X. Kneyzys et al., AFCL Atmospheric Consistent Profiles (0–120 km), AFGL-TR-86-0110. Hansom AFB, MA 01731 (1986).
17. V.N. Aref’ev, Kvantovaya Elektron. 12, No. 3, 631 (1985).
18. G.M. Krekov, R.F. Rakhimov, Optical Models of Atmospheric Aerosol, Tomsk Affiliate of the Branch of the USSR Academy of Sciences, Tomsk (1986).
19. V.P. Dgarov, V.S. Letokhov, Laser Optoacoustic Spectroscopy [in Russian] (Nauka, Moscow, 1984).
20. R.F. Adamowicz and K.P. Koo,  Appl. Opt. 18, No. 17, 2398–2946 (1979).