CO-dark molecular gas at high redshift: very large H content and high pressure in a low metallicity damped Lyman-alpha system
arXiv:1705.10283 · doi:10.1093/mnras/stx1339
Abstract
We present a detailed analysis of a H-rich, extremely strong intervening Damped Ly- Absorption system (DLA) at towards the quasar J0843+0221, observed with the Ultraviolet and Visual Echelle Spectrograph on the Very Large Telescope. The total column density of molecular (resp. atomic) hydrogen is (H)= (resp. (HI)=), making it to be the first case in quasar absorption lines studies with H column density as high as what is seen in CO-selected clouds in the Milky-Way. We find that this system has one of the lowest metallicity detected among H-bearing DLAs, with . This can be the reason for the marked differences compared to systems with similar H column densities in the local Universe: the kinetic temperature, 120~K, derived from the H rotational levels is at least twice higher than expected; there is little dust extinction with A; no CO molecules are detected, putting a constraint on the factor cm/(km/s\,K), in the very low metallicity gas. Low CO and high H contents indicate that this system represents "CO-dark/faint" gas. We investigate the physical conditions in the H-bearing gas using the fine-structure levels of CI, CII, SiII and the rotational levels of HD and H. We find the number density to be about cm, implying a high thermal pressure of cmK. We further identify a trend of increasing pressure with increasing total hydrogen column density. This independently supports the suggestion that extremely strong DLAs (with N(H) ) probe high-z galaxies at low impact parameters.
21 pages, 21 figures. Accepted for publication in MNRAS
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