English

An improved study of HCO+ and He system: interaction potential, collisional relaxation and pressure broadening

Astrophysics of Galaxies 2022-01-13 v1

Abstract

In light of its ubiquitous presence in the interstellar gas, the chemistry and reactivity of the HCO+ ion requires special attention. The availability of up-to-date collisional data between this ion and the most abundant perturbing species in the interstellar medium is a critical resource in order to derive reliable values of its molecular abundance from astronomical observations. This work intends to provide improved scattering parameters for the HCO+ and He collisional system. We have tested the accuracy of explicitly correlated coupled-cluster methods for mapping the short- and long-range multi-dimensional potential energy surface of atom-ion systems. A validation of the methodology employed for the calculation of the potential well has been obtained from the comparison with experimentally derived bound-state spectroscopic parameters. Finally, by solving the close-coupling scattering equations, we have derived the pressure broadening and shift coefficients for the first six rotational transitions of HCO+ as well as inelastic state-to-state transition rates up to j = 5 in the 5-100 K temperature interval.

Keywords

Cite

@article{arxiv.2201.04530,
  title  = {An improved study of HCO+ and He system: interaction potential, collisional relaxation and pressure broadening},
  author = {F. Tonolo and L. Bizzocchi and M. Melosso and F. Lique and L. Dore and V. Barone and C. Puzzarini},
  journal= {arXiv preprint arXiv:2201.04530},
  year   = {2022}
}

Comments

8 pages, 5 figures