English

Rotational quenching of CO due to H$_2$ collisions

Solar and Stellar Astrophysics 2015-05-18 v2

Abstract

Rate coefficients for state-to-state rotational transitions in CO induced by both para- and ortho-H2_2 collisions are presented. The results were obtained using the close-coupling method and the coupled-states approximation, with the CO-H2_2 interaction potential of Jankowski & Szalewicz (2005). Rate coefficients are presented for temperatures between 1 and 3000 K, and for CO(v=0,jv=0,j) quenching from j=140j=1-40 to all lower jj^\prime levels. Comparisons with previous calculations using an earlier potential show some discrepancies, especially at low temperatures and for rotational transitions involving large Δj|\Delta j|. The differences in the well depths of the van der Waals interactions in the two potential surfaces lead to different resonance structures in the energy dependence of the cross sections which influence the low temperature rate coefficients. Applications to far infrared observations of astrophysical environments are briefly discussed.

Keywords

Cite

@article{arxiv.1004.3923,
  title  = {Rotational quenching of CO due to H$_2$ collisions},
  author = {Benhui Yang and P. C. Stancil and N. Balakrishnan and R. C. Forrey},
  journal= {arXiv preprint arXiv:1004.3923},
  year   = {2015}
}

Comments

28 pages, 10 figures