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Collision-induced velocity changes from molecular dynamic simulations in H2-Ar: A test of the Keilson-Storer model and of line-broadening/shifting calculations for the Q(1) Raman line

  • Lab. Interuniversitaire Systemes
  • IPR (Institut de Physique de Rennes) - UMR 6251

Research output: Contribution to journalArticlepeer-review

21 Citations (Scopus)

Abstract

Classical Molecular Dynamics Simulations (MDS) are carried for the calculation of the collision kernels f(v→,v→') describing the velocity changes of H2 molecules induced by interactions with Ar atoms. These MDS results are first used for the test of a previously proposed three dimensional bi-parametric extension (KS-3D) of Keilson and Storer velocity-changing model. Semi-classical and close-coupling calculations of the speed-dependent collisional-broadening γcoll(v) and -shifting δcoll(v) coefficients are also made for the Q(1) line, using the best available H2-Ar potential energy surface. These data are compared with the corresponding values previously extracted from measured Raman spectra. Furthermore, the calculated values of f(v→,v→'), γcoll(v) and δcoll(v) are used to calculate the density dependence of the Q(1) line-width from the Doppler to the collisional regime and compare the results with experiments. The conclusions of this exercise are three fold. The first is that the KS-3D approach gives a satisfactory description of the velocity changes. The second is that the procedure used in a previous study in order to extract γcoll(v) and δcoll(v) from measured spectra was correct. The last, consistent with the findings of other independent studies, is that the H2-Ar interaction potential used needs refinements at short distances.

Original languageEnglish
Pages (from-to)1035-1042
Number of pages8
JournalJournal of Quantitative Spectroscopy and Radiative Transfer
Volume112
Issue number6
DOIs
Publication statusPublished - 1 Jan 2011
Externally publishedYes

Keywords

  • Line-shape
  • Raman
  • Velocity effects

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