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The absorption spectrum of water between 13 540 and 14 070 cm: ICLAS detection of weak lines and a complete line list
Authors:S Béguier  A Campargue
Institution:a Laboratoire de Spectrométrie Physique (Associated with CNRS, UMR 5588), Université Joseph Fourier de Grenoble, B.P. 87, 38402 Saint-Martin-d’Hères Cedex, France
b Laboratory of Theoretical Spectroscopy, V.E. Zuev Institute of Atmospheric Optics, SB, Russian Academy of Science, 1, Akademician Zuev Square, 634021 Tomsk, Russia
Abstract:The absorption spectrum of water vapor has been investigated by Intracavity Laser Absorption Spectroscopy (ICLAS) between 13 540 and 14 070 cm−1. This spectrum is dominated by relatively strong transitions of the 4δ polyad of vibrational states. The achieved sensitivity - on the order of αmin ∼ 10−9 cm−1 - has allowed one to newly measure 222 very weak transitions with intensities down to 5 × 10−28 cm/molecule at 296 K. Fifty new or corrected H216O energy levels belonging to a total of 13 vibrational states could be determined from the rovibrational analysis based on variational calculations by Schwenke and Partridge. The previous investigations in the region by Fourier Transform Spectroscopy were critically evaluated and used to construct the best to date set of energy levels accessed by transitions in the considered region. All the rovibrational transitions reaching these upper energy levels and having intensities larger than 4.0 × 10−28 cm/mol were calculated. In the resulting line list, the positions at the level of experimental accuracy were augmented with variational intensities leading to the most complete line list for water in normal isotopic abundance in the 13 500-14 100 cm−1 region.
Keywords:Water  H2O  Intracavity Laser Absorption Spectroscopy  ICLAS  Rovibrational assignment  HITRAN
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