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Line coupling effects in the isotropic Raman spectra of N2: A quantum calculation at room temperature
Author(s) -
Franck Thibault,
C. Boulet,
Q. Ma
Publication year - 2014
Publication title -
the journal of chemical physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.071
H-Index - 357
eISSN - 1089-7690
pISSN - 0021-9606
DOI - 10.1063/1.4862082
Subject(s) - isotropy , quantum , spectral line , rigid rotor , work (physics) , raman spectroscopy , coupling (piping) , physics , atomic physics , statistical physics , molecular physics , quantum mechanics , chemistry , materials science , rotor (electric) , metallurgy
International audienceWe present quantum calculations of the relaxation matrix for the Q branch of N2 at room temperature using a recently proposed N2-N2 rigid rotor potential. Close coupling calculations were complemented by coupled states studies at high energies and provide about 10 200 two-body state-to state cross sections from which the needed one-body cross-sections may be obtained. For such temperatures, convergence has to be thoroughly analyzed since such conditions are close to the limit of current computational feasibility. This has been done using complementary calculations based on the energy corrected sudden formalism. Agreement of these quantum predictions with experimental data is good, but the main goal of this work is to provide a benchmark relaxation matrix for testing more approximate methods which remain of a great utility for complex molecular systems at room (and higher) temperatures

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