English

Parsec-scale cosmic-ray ionisation rate in Orion

Astrophysics of Galaxies 2024-07-03 v1

Abstract

Cosmic rays regulate the dynamics and the chemical processes in the densest and coldest regions of the ISM. Still, the determination of the cosmic-ray ionisation rate of H2_2 (ζH2ion{\zeta^{\rm ion}_{{\rm H}_2}}) is plagued by uncertainties in the adopted chemical networks and the analysis techniques. This work aims to homogeneously estimate the ζH2ion{\zeta^{\rm ion}_{{\rm H}_2}} at parsec scales towards the Orion Molecular Clouds OMC-2 and OMC-3, probing its variation across a whole star-forming region and a range of column densities never explored before. The most recent ζH2ion{\zeta^{\rm ion}_{{\rm H}_2}} estimates are based on o-H2_2D+^+, whose abundance we proxy through CO depletion taking advantage of the existing correlation between the two parameters. We therefore employ observations of C18^{18}O (2-1), HCO+^+ (1-0) and DCO+^+ (3-2) towards OMC-2 and OMC-3 to determine the depletion factor, the deuteration fraction and, ultimately, a map of ζH2ion{\zeta^{\rm ion}_{{\rm H}_2}} in these two regions. The depletion factors and deuteration fractions correlate with the total column density of H2_2, the N2_2H+^+ emission and the coldest fields across OMC-2 and OMC-3. The cosmic-ray ionisation rate shows values of ζH2ion5×10181016{\zeta^{\rm ion}_{{\rm H}_2}}\sim5\times10^{-18}-10^{-16}~s1^{-1}, in agreement with previous o-H2_2D+^+-based estimates. In addition, it shows an overall decrease for increasing N(H2N(\mathrm{H_2}), consistently with the predictions from theoretical models. Our approach provides results comparable with theoretical predictions and previous independent studies, confirming the robustness of the analytical framework and the viability of CO depletion as proxy for o-H2_2D+^+. By exploring the major limitations of the method, we suggest interferometric observations as mandatory to reliably constrain the ζH2ion{\zeta^{\rm ion}_{{\rm H}_2}} also at parsec scales.

Keywords

Cite

@article{arxiv.2404.15754,
  title  = {Parsec-scale cosmic-ray ionisation rate in Orion},
  author = {A. Socci and G. Sabatini and M. Padovani and S. Bovino and A. Hacar},
  journal= {arXiv preprint arXiv:2404.15754},
  year   = {2024}
}
R2 v1 2026-06-28T16:04:53.561Z