English

Cloud formation in the atomic and molecular phase: HI self absorption (HISA) towards a Giant Molecular Filament

Solar and Stellar Astrophysics 2020-03-04 v1 Astrophysics of Galaxies

Abstract

Molecular clouds form from the atomic phase of the interstellar medium. However, characterizing the transition between the atomic and the molecular interstellar medium (ISM) is a difficult observational task. Here we address cloud formation processes by combining HSIA with molecular line data. One scenario proposed by numerical simulations is that the column density probability density functions (N-PDF) evolves from a log-normal shape at early times to a power-law-like shape at later times. In this paper, we study the cold atomic component of the giant molecular filament GMF38a (d=3.4 kpc, length230\sim230 pc). We identify an extended HISA feature, which is partly correlated with the 13CO emission. The peak velocities of the HISA and 13CO observations agree well on the eastern side of the filament, whereas a velocity offset of approximately 4 km s1^{-1} is found on the western side. The sonic Mach number we derive from the linewidth measurements shows that a large fraction of the HISA, which is ascribed to the cold neutral medium (CNM), is at subsonic and transonic velocities. The column density of the CNM is on the order of 1020^{20} to 1021^{21} cm2^{-2}. The column density of molecular hydrogen is an order of magnitude higher. The N-PDFs from HISA (CNM), HI emission (WNM+CNM), and 13CO (molecular component) are well described by log-normal functions, which is in agreement with turbulent motions being the main driver of cloud dynamics. The N-PDF of the molecular component also shows a power law in the high column-density region, indicating self-gravity. We suggest that we are witnessing two different evolutionary stages within the filament. The eastern subregion seems to be forming a molecular cloud out of the atomic gas, whereas the western subregion already shows high column density peaks, active star formation and evidence of related feedback processes.

Keywords

Cite

@article{arxiv.2001.00953,
  title  = {Cloud formation in the atomic and molecular phase: HI self absorption (HISA) towards a Giant Molecular Filament},
  author = {Y. Wang and S. Bihr and H. Beuther and M. R. Rugel and J. D. Soler and J. Ott and J. Kainulainen and N. Schneider and R. S. Klessen and S. C. O. Glover and N. M. McClure-Griffiths and P. F. Goldsmith and K. G. Johnston and K. M. Menten and S. Ragan and L. D. Anderson and J. S. Urquhart and H. Linz and N. Roy and R. J. Smith and F. Bigiel and T. Henning and S. N. Longmore},
  journal= {arXiv preprint arXiv:2001.00953},
  year   = {2020}
}

Comments

22 pages, 25 figures, accepted for publication by A&A