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Experimental and theoretical study of line shape parameters for nitrous oxide absorption lines diluted in nitrogen

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Abstract

This paper reports on an experimental and theoretical study of line shape parameters for ν 1-band nitrous oxide lines diluted in a bath of nitrogen. The measurements were performed at room temperature using a high-resolution mid-infrared dual-comb spectrometer. The collisional broadening coefficient and its speed-dependence were determined by adjusting the Voigt and speed-dependent Voigt profiles to the experimental absorption coefficients. The N 2-broadening coefficients are in good agreement with literature data and their speed-dependence reasonably reproduces the few experimental data available. Using the present measurements and literature data, the intermolecular potential was determined in the framework of the Complex Robert-Bonamy-Ma formalism. The calculated half-width reproduces the experimental data very well with a nearly zero average percent difference and a root mean square deviation of 1.3 %. The theoretical results are in very good agreement with experimental literature data.

Original languageEnglish
Article number109498
JournalJournal of Quantitative Spectroscopy and Radiative Transfer
Volume342
DOIs
Publication statusPublished - Sept 2025

Funding

B. Vispoel thanks the F.R.S.-FNRS for postdoctoral financial support. The authors thank also Plateforme Technologique de Calcul Intensif (PTCI)\" (http://www.ptci.unamur.be) located at the University of Namur, Belgium, which is supported by the FNRS-FRFC, the Walloon Region, and the University of Namur (Conventions No 2.5020.11, GEQ U.G006.15, 1610468, RW/GEQ2016 et U.G011.22). The PTCI is member of the \"Consortium des \u00C9quipements de Calcul Intensif (C\u00C9CI) \"

FundersFunder number
FNRS‐FRFC
Fonds De La Recherche Scientifique - FNRS
University of Namur1610468, 2.5020.11, U.G011.22, RW/GEQ2016, GEQ U.G006.15

    Keywords

    • Collisional half-width and its speed-dependence
    • Complex Robert-Bonamy-Ma formalism
    • High-resolution dual-comb spectroscopy
    • Nitrous oxide broadening of nitrogen

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