On the nature of sub-THz continuum absorption in CO2 gas, its mixture with Ar, and in pure water vapor

Author:

Galanina T. A.1,Koroleva A. O.1,Amerkhanov I. S.1,Serov E. A.1,Koshelev M. A.1,Tretyakov M. Yu.1ORCID,Chistikov D. N.1234,Finenko A. A.134ORCID,Vigasin A. A.12ORCID

Affiliation:

1. A. V. Gaponov-Grekhov Institute of Applied Physics of the Russian Academy of Sciences, 46 Ulyanov str., Nyzhny Novgorod 603950, Russia

2. A. M. Obukhov Institute of Atmospheric Physics, Russian Academy of Sciences, 3 Pyzhevsky Per., Moscow 119017, Russia

3. Department of Chemistry, Lomonosov Moscow State University, GSP-1, 1-3 Leninskiye Gory, Moscow 119991, Russia

4. Institute of Quantum Physics, Irkutsk National Research Technical University, 83 Lermontov str., Irkutsk 664074, Russia

Abstract

Close similarity between collision induced absorption in the CO2 containing gases and the H2O continuum paves the way for the full-scale physically-based modeling of the latter for atmospheric applications.

Funder

Russian Science Foundation

Ministry of Science and Higher Education of the Russian Federation

Publisher

Royal Society of Chemistry (RSC)

Reference90 articles.

1. L. M.Trafton , in Molecular complexes in Earth's, planetery, cometary and interstellar atmospheres , ed. A. A. Vigasin and Z. Slanina , World Scientific , London , 1998 , ch. 6, pp. 177–193

2. Infrared collision-induced and far-line absorption in dense CO2 atmospheres

3. P.Jensen and P. R.Bunker , Computational molecular spectroscopy , Wiley , 2000 , p. 688

4. The Water Vapour Continuum: Brief History and Recent Developments

5. Far Infrared Absorption of Atmospheric Water Vapor

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1. Continuum absorption in pure N2 gas and in its mixture with Ar;Journal of Quantitative Spectroscopy and Radiative Transfer;2024-12

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