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Recommended isolated-line profile for representing high-resolution spectroscopic transitions (IUPAC technical report)

  • Jonathan Tennyson
  • , Peter F. Bernath
  • , Alain Campargue
  • , Attila G. Császár
  • , Ludovic Daumont
  • , Robert R. Gamache
  • , Joseph T. Hodges
  • , Daniel Lisak
  • , Olga V. Naumenko
  • , Laurence S. Rothman
  • , Ha Tran
  • , Jean Michel Hartmann
  • , Nikolai F. Zobov
  • , Jeanna Buldyreva
  • , Chris D. Boone
  • , Maria Domenica De Vizia
  • , Livio Gianfrani
  • , Robert McPheat
  • , Damien Weidmann
  • , Jonathan Murray
  • Ngoc Hoa Ngo, Oleg L. Polyansky
  • University College London
  • Old Dominion University
  • Laboratoire Interdisciplinaire de Physique
  • Eötvös Loránd University
  • MTA-ELTE Research Group on Complex Chemical Systems
  • CNRS
  • University of Massachusetts-Lowell
  • National Institute of Standards and Technology
  • Nicolaus Copernicus University
  • Russian Academy of Sciences
  • Center for Astrophysics | Harvard & Smithsonian
  • Lab. Interuniversitaire Systemes
  • Institute of Applied Physics of the Russian Academy of Sciences
  • Institut UTINAM - Univers, Temps-fréquence, Interfaces, Nanostructures, Atmosphère et environnement, Molécules
  • University of Waterloo
  • University of Campania L. Vanvitelli
  • CCLRC Rutherford Appleton Laboratory
  • Imperial College London
  • Hanoi National University of Education

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

283 Citations (Scopus)

Résumé

The report of an IUPAC Task Group, formed in 2011 on "Intensities and line shapes in high-resolution spectra of water isotopologues from experiment and theory" (Project No. 2011-022-2-100), on line profiles of isolated high-resolution rotational-vibrational transitions perturbed by neutral gas-phase molecules is presented. The well-documented inadequacies of the Voigt profile (VP), used almost universally by databases and radiative-transfer codes, to represent pressure effects and Doppler broadening in isolated vibrationalrotational and pure rotational transitions of the water molecule have resulted in the development of a variety of alternative line-profile models. These models capture more of the physics of the influence of pressure on line shapes but, in general, at the price of greater complexity. The Task Group recommends that the partially Correlated quadratic-Speed-Dependent Hard-Collision profile (pCqSD-HCP) should be adopted as the appropriate model for high-resolution spectroscopy. For simplicity this should be called the Hartmann-Tran profile (HTP). The HTP is sophisticated enough to capture the various collisional contributions to the isolated line shape, can be computed in a straightforward and rapid manner, and reduces to simpler profiles, including the Voigt profile, under certain simplifying assumptions.

langue originaleAnglais
Pages (de - à)1931-1943
Nombre de pages13
journalPure and Applied Chemistry
Volume86
Numéro de publication12
Les DOIs
étatPublié - 1 déc. 2014
Modification externeOui

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