English

Ubiquitous argonium (ArH$^+$) in the diffuse interstellar medium -- a molecular tracer of almost purely atomic gas

Astrophysics of Galaxies 2014-08-27 v2

Abstract

We describe the assignment of a previously unidentified interstellar absorption line to ArH+^+ and discuss its relevance in the context of hydride absorption in diffuse gas with a low H2_2 fraction. The column densities along several lines of sight are determined and discussd in the framework of chemical models. The column densities of ArH+^+ are compared to those of other species, tracing interstellar medium (ISM) components with different H2_2 abundances. Chemical models are constructed, taking UV radiation and cosmic ray ionization into account. Due to the detection of two isotopologues, 36^{36}ArH+^+ and 38^{38}ArH+^+, we are confident about the carrier assignment to ArH+^+. NeH+^+ is not detected with a limit of [NeH+^+]/[ArH+^+] \le 0.1. The derived column densities agree well with the predictions of chemical models. ArH+^+ is a unique tracer of gas with a fractional H2_2 abundance of 10410310^{-4}- 10^{-3} and shows little correlation with H2_2O+^+, which traces gas with a fractional H2_2 abundance of \approx 0.1. A careful analysis of variations in the ArH+^+, OH+^+, H2_2O+^+ and HF column densities promises to be a faithful tracer of the distribution of the H2_2 fractional abundance, providing unique information on a poorly known phase in the cycle of interstellar matter, its transition from atomic diffuse gas to dense molecular gas traced by CO emission. Abundances of these species put strong observational constraints upon magnetohydrodynamical (MHD) simulations of the interstellar medium, and potentially could evolve into a tool to characterize the ISM. Paradoxically, the ArH+^+ molecule is a better tracer of \new{almost} purely atomic hydrogen gas than H{\sc i} itself, since H{\sc i} can also be present in gas with a significant molecular content, but ArH+^+ singles out gas that is >99.9>99.9\% atomic.

Keywords

Cite

@article{arxiv.1403.7902,
  title  = {Ubiquitous argonium (ArH$^+$) in the diffuse interstellar medium -- a molecular tracer of almost purely atomic gas},
  author = {Peter Schilke and David A. Neufeld and Holger S. P. Müller and Claudia Comito and Edwin A. Bergin and Dariusz C. Lis and Maryvonne Gerin and John H. Black and Mark Wolfire and Nick Indriolo and John. C. Pearson and Karl M. Menten and Benjamin Winkel and Alvaro Sanchez-Monge and Thomas Moeller and Benjamin Godard and Edith Falgarone},
  journal= {arXiv preprint arXiv:1403.7902},
  year   = {2014}
}

Comments

12 pages, 11 figures, Astronomy and Astrophysics, accepted revised version: previous version had column density of SgrB2 sources wrong