Theoretical ro-vibrational spectrum of CF+
Abstract
We determined the energies for ro-vibrational transitions of fluoromethylidynium (CF+) using a numerical variational approach and a Potential Energy Function calculated with the internally contracted multireference, configuration interaction method including also the Davidson correction (MRCI+Q). For this purpose, all the CSFs built the full valence space have been selected as multireferential space and all the valence electrons have been correlated for the ground state X-1 Sigma(+) of CF+. The rotational transitions observed experimentally toward the Orion Bar have been calculated to be 101.2 (102.6) GHz, 202.9 (205.2) GHz and 304.0 (307.7) GHz (experimental values in parentheses) respectively for the J = 1 -> 0, J = 2 -> 1 and J = 3 -> 2 transitions. From the manifold of transitions data. it is shown how to calculate the spectroscopic parameters as well as the coefficients for the Dunham expansion.
Patrocinador
Fondecyt Projects 1040923
7070264
Universidad Nacional Andres Bello (UNAB)
UNAB-DI-21-06/I
CONICYT
MEC (Spain) AYA2005-00702
Milenium Nucleus For Applied Quantum Mechanics P02-004-F
Superdome computer of CESGA, Galicia, Spain
Identifier
URI: https://repositorio.uchile.cl/handle/2250/125242
DOI: 10.1016/j.saa.2008.02.027
ISSN: 1386-1425
Quote Item
SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY Volume: 71 Issue: 3 Pages: 798-802 Published: DEC 1 2008
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