Molecular Hydrogen in Damped Ly-alpha Systems: Spatial Distribution
Abstract
To interpret H_2 quasar absorption line observations in Damped Ly-alpha clouds (DLAs), we model the H_2 spatial distribution within a DLA. Based on numerical simulations of disk structures with parameters similar to those derived for such absorbers, we calculate the H_2 distribution as a function of ultraviolet background (UVB) intensity and dust-to-gas ratio. For typical values of these two quantities we find that the area in which the H_2 fraction exceeds 10^{-6} (typical observational detection limit) only covers % of the disk surface, i.e. H_2 has a very inhomogeneous, clumpy distribution even at these low abundance levels. This explains the relative paucity of H_2 detections in DLAs. We also show the dependence of the covering fraction of H_2 on dust-to-gas ratio and UVB intensity and we comment on the physics governing the H_2 chemical network at high redshift.
Cite
@article{arxiv.astro-ph/0303495,
title = {Molecular Hydrogen in Damped Ly-alpha Systems: Spatial Distribution},
author = {H. Hirashita and A. Ferrara and K. Wada and P. Richter},
journal= {arXiv preprint arXiv:astro-ph/0303495},
year = {2009}
}
Comments
5 pages, 3 figures, 1 table, accepted by MNRAS Letter