X-shooter observations of strong H$_2$-bearing DLAs at high redshift
S. A. Balashev, V. V. Klimenko, P. Noterdaeme, J.-K. Krogager, D. A., Varshalovich, A. V. Ivanchik, P. Petitjean, R. Srianand, C. Ledoux

TL;DR
This study uses X-shooter spectroscopy to analyze seven high-redshift H$_2$-bearing DLAs, confirming molecular hydrogen presence and characterizing their physical and chemical properties, revealing insights into the conditions of early universe molecular clouds.
Contribution
First comprehensive spectroscopic analysis of high-redshift H$_2$-bearing DLAs using X-shooter, comparing selection biases and constraining physical conditions of the gas.
Findings
Molecular hydrogen detected in all seven DLAs.
Typical gas temperature around 100K and density about 100 cm$^{-3}$.
UV radiation field about twice the Draine field.
Abstract
We present results from spectroscopic observations with X-shooter at the Very Large Telescope of seven H2-bearing DLAs at high redshifts (z). These DLAs were originally selected from the presence of strong H lines directly seen at the DLA redshift in low-resolution, low S/N SDSS spectra. We confirm the detection of molecular hydrogen in all of them. We measure the column densities of HI, H in various rotational levels, and metal species, and associated dust extinction. The metallicities, obtained from undepleted species, are in the range logZ=-0.8 to -0.2. We discuss the chemical enrichment in these clouds and compare their properties with that of other molecular-rich systems selected by other means. In particular, we show that three different methods of pre-selection of H-bearing DLAs in the SDSS have their own biases but complement each other mostly…
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