English

Photodissociation Region Diagnostics Across Galactic Environments

Astrophysics of Galaxies 2021-01-20 v1 Solar and Stellar Astrophysics

Abstract

We present three-dimensional astrochemical simulations and synthetic observations of magnetised, turbulent, self-gravitating molecular clouds. We explore various galactic interstellar medium environments, including cosmic-ray ionization rates in the range of ζCR=1017\zeta_{\rm CR}=10^{-17}-1014s110^{-14}\,{\rm s}^{-1}, far-UV intensities in the range of G0=1G_0=1-10310^3 and metallicities in the range of Z=0.1Z=0.1-2Z2\,{\rm Z}_{\odot}. The simulations also probe a range of densities and levels of turbulence, including cases where the gas has undergone recent compression due to cloud-cloud collisions. We examine: i) the column densities of carbon species across the cycle of CII, CI and CO, along with OI, in relation to the HI-to-H2_2 transition; ii) the velocity-integrated emission of [CII]~158μ158\mum, [13^{13}CII]~158μ158\mum, [CI]~609μ609\mum and 370μ370\mum, [OI]~63μ63\mum and 146μ146\mum, and of the first ten 12^{12}CO rotational transitions; iii) the corresponding Spectral Line Energy Distributions; iv) the usage of [CII] and [OI]~63μ63\mum to describe the dynamical state of the clouds; v) the behavior of the most commonly used ratios between transitions of CO and [CI]; and vi) the conversion factors for using CO and CI as H2_2-gas tracers. We find that enhanced cosmic-ray energy densities enhance all aforementioned line intensities. At low metallicities, the emission of [CII] is well connected with the H2_2 column, making it a promising new H2_2 tracer in metal-poor environments. The conversion factors of XCOX_{\rm CO} and XCIX_{\rm CI} depend on metallicity and the cosmic-ray ionization rate, but not on FUV intensity. In the era of ALMA, SOFIA and the forthcoming CCAT-prime telescope, our results can be used to understand better the behaviour of systems in a wide range of galactic and extragalactic environments.

Keywords

Cite

@article{arxiv.2012.06773,
  title  = {Photodissociation Region Diagnostics Across Galactic Environments},
  author = {Thomas G. Bisbas and Jonathan C. Tan and Kei E. I. Tanaka},
  journal= {arXiv preprint arXiv:2012.06773},
  year   = {2021}
}

Comments

33 pages, 24 figures, 3 tables. Submitted to MNRAS. Comments welcome!

R2 v1 2026-06-23T20:55:11.226Z