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Full-dimensional quantum dynamics of CO in collision with H2.

Publication ,  Journal Article
Yang, B; Balakrishnan, N; Zhang, P; Wang, X; Bowman, JM; Forrey, RC; Stancil, PC
Published in: The Journal of chemical physics
July 2016

Inelastic scattering computations are presented for collisions of vibrationally and rotationally excited CO with H2 in full dimension. The computations utilize a newly developed six-dimensional potential energy surface (PES) and the previously reported four-dimensional V12 PES [P. Jankowski et al., J. Chem. Phys. 138, 084307 (2013)] and incorporate full angular-momentum coupling. At low collision energies, pure rotational excitation cross sections of CO by para-, ortho-, and normal-H2 are calculated and convolved to compare with recent measurements. Good agreement with the measured data is shown except for j1 = 0 → 1 excitation of CO for very low-energy para-H2 collisions. Rovibrational quenching results are presented for initially excited CO(v1j1) levels with v1 = 1, j1 = 1-5 and v1 = 2, j1 = 0 for collisions with para-H2 (v2 = 0, j2 = 0) and ortho-H2 (v2 = 0, j2 = 1) over the kinetic energy range 0.1-1000 cm(-1). The total quenching cross sections are found to have similar magnitudes, but increase (decrease) with j1 for collision energies above ∼300 cm(-1) (below ∼10 cm(-1)). Only minor differences are found between para- and ortho-H2 colliders for rovibrational and pure rotational transitions, except at very low collision energies. Likewise, pure rotational deexcitation of CO yields similar cross sections for the v1 = 0 and v1 = 1 vibrational levels, while rovibrational quenching from v1 = 2, j1 = 0 is a factor of ∼5 larger than that from v1 = 1, j1 = 0. Details on the PES, computed at the CCSD(T)/aug-cc-pV5Z level, and fitted with an invariant polynomial method, are also presented.

Duke Scholars

Published In

The Journal of chemical physics

DOI

EISSN

1089-7690

ISSN

0021-9606

Publication Date

July 2016

Volume

145

Issue

3

Start / End Page

034308

Related Subject Headings

  • Chemical Physics
  • 51 Physical sciences
  • 40 Engineering
  • 34 Chemical sciences
  • 09 Engineering
  • 03 Chemical Sciences
  • 02 Physical Sciences
 

Citation

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Yang, B., Balakrishnan, N., Zhang, P., Wang, X., Bowman, J. M., Forrey, R. C., & Stancil, P. C. (2016). Full-dimensional quantum dynamics of CO in collision with H2. The Journal of Chemical Physics, 145(3), 034308. https://doi.org/10.1063/1.4958951
Yang, Benhui, N. Balakrishnan, P. Zhang, X. Wang, J. M. Bowman, R. C. Forrey, and P. C. Stancil. “Full-dimensional quantum dynamics of CO in collision with H2.The Journal of Chemical Physics 145, no. 3 (July 2016): 034308. https://doi.org/10.1063/1.4958951.
Yang B, Balakrishnan N, Zhang P, Wang X, Bowman JM, Forrey RC, et al. Full-dimensional quantum dynamics of CO in collision with H2. The Journal of chemical physics. 2016 Jul;145(3):034308.
Yang, Benhui, et al. “Full-dimensional quantum dynamics of CO in collision with H2.The Journal of Chemical Physics, vol. 145, no. 3, July 2016, p. 034308. Epmc, doi:10.1063/1.4958951.
Yang B, Balakrishnan N, Zhang P, Wang X, Bowman JM, Forrey RC, Stancil PC. Full-dimensional quantum dynamics of CO in collision with H2. The Journal of chemical physics. 2016 Jul;145(3):034308.

Published In

The Journal of chemical physics

DOI

EISSN

1089-7690

ISSN

0021-9606

Publication Date

July 2016

Volume

145

Issue

3

Start / End Page

034308

Related Subject Headings

  • Chemical Physics
  • 51 Physical sciences
  • 40 Engineering
  • 34 Chemical sciences
  • 09 Engineering
  • 03 Chemical Sciences
  • 02 Physical Sciences