Abstract
We present calculated rate coefficients for ro-vibrational transitions
of CO in collisions with H atoms for a gas temperature range of 10 K
≤ T ≤ 3000 K, based on the recent three-dimensional ab initio
H-CO interaction potential of Song et al. Rate coefficients for
ro-vibrational v=1,j=0-30\to v\prime =0,j\prime
transitions were obtained from scattering cross sections previously
computed with the close-coupling (CC) method by Song et al. Combining
these with the rate coefficients for vibrational v=1-5\to
v\prime \lt v quenching obtained with the infinite-order
sudden approximation, we propose a new extrapolation scheme that yields
the rate coefficients for ro-vibrational v=2-5,j=0-30\to
v\prime ,j\prime de-excitation. Cross sections
and rate coefficients for ro-vibrational v=2,j=0-30\to
v\prime =1,j\prime transitions calculated with
the CC method confirm the effectiveness of this extrapolation scheme.
Our calculated and extrapolated rates are very different from those that
have been adopted in the modeling of many astrophysical environments.
The current work provides the most comprehensive and accurate set of
ro-vibrational de-excitation rate coefficients for the astrophysical
modeling of the H-CO collision system. The application of the
previously available and new data sets in astrophysical slab models
shows that the line fluxes typically change by 20%-70% in high
temperature environments (800 K) with an H/H2 ratio of 1;
larger changes occur for lower temperatures.
| Original language | English |
|---|---|
| Pages (from-to) | 96-106 |
| Number of pages | 11 |
| Journal | The Astrophysical Journal |
| Volume | 813 |
| DOIs | |
| Publication status | Published - Nov-2015 |
Keywords
- astronomical databases: miscellaneous
- ISM: molecules
- molecular data
- molecular processes
- photon-dominated region: PDR
- protoplanetary disks
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CO ro-vibrational transitions
Song, L. (Contributor), Balakrishnan, N. (Contributor), Walker, K. M. (Creator), Stancil, P. C. (Contributor), Thi, W. F. (Contributor), Kamp, I. (Contributor), Van Der Avoird, A. (Contributor) & Groenenboom, G. C. (Contributor), Strasbourg Astronomical Data Center, 18-Mar-2016
DOI: 10.26093/cds/vizier.18130096, https://cdsarc.cds.unistra.fr/viz-bin/cat/J/ApJ/813/96
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