English

PDFchem: A new fast method to determine ISM properties and infer environmental parameters using probability distributions

Astrophysics of Galaxies 2022-12-07 v1 Solar and Stellar Astrophysics

Abstract

Determining the atomic and molecular content of the interstellar medium (ISM) as a function of environmental parameters is of fundamental importance to understand the star-formation process across the epochs. Although there exist various three-dimensional hydro-chemical codes modelling the ISM at different scales and redshifts, they are computationally expensive and inefficient for studies over a large parameter space. Building on our earlier approach, we present PDFchem, a novel algorithm that models the cold ISM at moderate and large scales using functions connecting the quantities of the local (AV,effA_{\rm V,eff}) and the observed (AV,obsA_{\rm V,obs}) visual extinctions, and the local number density, nHn_{\rm H}, with probability density functions (PDF) of AV,obsA_{\rm V,obs} on cloud scales typically tens-to-hundreds of pc as an input. For any given AV,obsA_{\rm V,obs}-PDF, sampled with thousands of clouds, the algorithm instantly computes the average abundances of the most important species (HI, H2_2, CII, CI, CO, OH, OH+^+, H2_2O+^+, CH, HCO+^+) and performs radiative transfer calculations to estimate the average emission of the most commonly observed lines ([CII]~158μ158\mum, both [CI] fine-structure lines and the first five rotational transitions of 12^{12}CO). We examine two AV,obsA_{\rm V,obs}-PDFs corresponding to a non star-forming and a star-forming ISM region, under a variety of environmental parameters combinations. These cover FUV intensities in the range of χ/χ0=101103\chi/\chi_0=10^{-1}-10^3, cosmic-ray ionization rates in the range of ζCR=10171013s1\zeta_{\rm CR}=10^{-17}-10^{-13}\,{\rm s}^{-1} and metallicities in the range of Z=0.12ZZ=0.1-2\,{\rm Z}_{\odot}. PDFchem is fast, easy to use, reproduces the PDR quantities of the time-consuming hydrodynamical models and can be used directly with observed data to understand the evolution of the cold ISM chemistry.

Keywords

Cite

@article{arxiv.2211.12974,
  title  = {PDFchem: A new fast method to determine ISM properties and infer environmental parameters using probability distributions},
  author = {Thomas G. Bisbas and Ewine F. van Dishoeck and Chia-Yu Hu and Andreas Schruba},
  journal= {arXiv preprint arXiv:2211.12974},
  year   = {2022}
}

Comments

33 pages, 27 figures. Accepted in MNRAS. The algorithm can be found in: https://github.com/tbisbas/PDFchem. Comments welcome!

R2 v1 2026-06-28T06:40:40.516Z