English

Deuterium fractionation as a multi-phase component tracer in the Galactic Centre

Astrophysics of Galaxies 2022-03-02 v1 Earth and Planetary Astrophysics Solar and Stellar Astrophysics

Abstract

The Central Molecular Zone (CMZ) contains most of the mass of our Galaxy but its star formation rate is one order of magnitude lower than in the Galactic disc. This is likely related to the fact that the bulk of the gas in the CMZ is in a warm (>>100 K) and turbulent phase with little material in the pre-stellar phase. We present in this Letter observations of deuterium fractionation (D/H ratios) of HCN, HNC, HCO+^{+}, and N2_{2}H+^{+} towards the CMZ molecular cloud G+0.693-0.027. These observations clearly show, for the first time, the presence of a colder, denser, and less turbulent narrow component, with a line width of \sim9 km s1^{-1}, in addition to the warm, less dense and turbulent broad component with a line width of \sim20 km s1^{-1}. The very low D/H ratio \le6×\times105^{-5} for HCO+^{+} and N2_{2}H+^{+}, close to the cosmic value (\sim2.5×\times105^{-5}), and the high D/H ratios >>4×\times104^{-4} for HCN and HNC derived for the broad component, confirm the presence of high-temperatures deuteration routes for nitriles. For the narrow component we have derived D/H ratios >>104^{-4} and excitation temperatures of 77 K for all molecules, suggesting kinetic temperatures \le30 K and H2_2 densities \ge5×\times104^{4} cm3^{-3}, at least one order of magnitude larger than for the broad component. The method presented in this Letter allows to identify clouds on the verge of star formation, i.e. under pre-stellar conditions, towards the CMZ. This method can also be used for the identification of such clouds in external galaxies.

Keywords

Cite

@article{arxiv.2202.04111,
  title  = {Deuterium fractionation as a multi-phase component tracer in the Galactic Centre},
  author = {L. Colzi and J. Martín-Pintado and V. M. Rivilla and I. Jiménez-Serra and S. Zeng and L. F. Rodríguez-Almeida and F. Rico-Villas and S. Martín and M. A. Requena-Torres},
  journal= {arXiv preprint arXiv:2202.04111},
  year   = {2022}
}

Comments

11 pages, 4 figures, 2 tables, 2 appendix - Accepted for publication in ApJ Letters