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Water vapor absorption line intensities in the 1900-6600 cm region
Authors:SN Mikhailenko  KA Keppler Albert  G Mellau  BP Winnewisser  M Winnewisser  VlG Tyuterev
Institution:a Laboratory of Theoretical Spectroscopy, Institute of Atmospheric Optics, Russian Academy of Sciences, 1, Akademicheskaya Avenue, 634055 Tomsk, Russian Federation
b Physikalisch-Chemisches Institut, Justus-Liebig-Universität Giessen, Heinrich-Buff-Ring 58, D-35392 Giessen, Germany
c Physical Chemistry, ETH Zürich, Hönggerberg, CH-8093 Zürich, Switzerland
d Department of Physics, The Ohio State University, Columbus, OH 43210, USA
e Groupe de Spectrométrie Moléculaire et Atmosphérique, UMR CNRS 6089, Faculté des Sciences, Université de Reims, Moulin de la Housse, BP 1039, 51687 Reims Cedex 2, France
Abstract:Water vapor infrared spectra have been measured using the Bruker IFS 120 HR Fourier transform spectrometer at the Physikalisch-Chemisches Institut of the Justus-Liebig-Universität Giessen. Spectra were recorded at pressure-broadening-limited resolution and at room temperature in the range of 1900-6600 cm−1. The use of fully evacuated transfer optics and a White-type multireflection cell made it possible to obtain pressure×pathlength products up to 31.27 mbar×288.5 m. These spectra have previously been used to determine experimental values of rovibrational line positions and upper energy levels of the 2ν2, ν1, and ν3 bands Mikhailenko SN, Tyuterev VlG, Keppler KA, Winnewisser BP, Winnewisser M, Mellau G, et. al. The 2ν2 band of water: analysis of new FTS measurements and high-Ka transitions and energy levels. J Mol Spectrosc 1997;184: 330-49] and of the 3ν2, ν1+ν2, and ν2+ν3 bands Mikhailenko SN, Tyuterev VlG, Starikov VI, Albert KK, Winnewisser BP, Winnewisser M, et al. Water spectra in the region 4200-6250 cm−1, extended analysis of ν1+ν2, ν2+ν3, and 3ν2 bands and confirmation of highly excited states from flame spectra and from atmospheric long-path observations. J. Mol. Spectrosc. 2002; 213: 91-121].This work presents the intensities of 3769 lines for the weak and medium transitions in the spectral range indicated. These data provide an independent source of experimental information which is complementary to intensity data available in the literature and can thus help to evaluate experimental errors and the reliability of these spectral line parameters.
Keywords:Fourier transform spectroscopy  Water molecule  Line intensities  H216O
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