The Ly emission from high- galaxies hosting strong Damped Ly systems
arXiv:1610.06580 · doi:10.1093/mnras/stw2733
Abstract
We study the average Ly emission associated with high- strong (log (H I) 21) damped Ly systems (DLAs). We report Ly luminosities () for the full as well as various sub-samples based on (H I), , colours of QSOs and rest equivalent width of Si II1526 line (i.e., ). For the full sample, we find with a level detection of Ly emission in the red part of the DLA trough. The is found to be higher for systems with higher with its peak, detected at , redshifted by about 300-400 with respect to the systemic absorption redshift, as seen in Lyman Break Galaxies (LBGs) and Ly emitters. A clear signature of a double-hump Ly profile is seen when we consider Å and . Based on the known correlation between metallicity and , we interpret our results in terms of star formation rate (SFR) being higher in high metallicity (mass) galaxies with high velocity fields that facilitates easy Ly escape. The measured Ly surface brightness requires local ionizing radiation that is 4 to 10 times stronger than the metagalactic UV background at these redshifts. The relationship between the SFR and surface mass density of atomic gas seen in DLAs is similar to that of local dwarf and metal poor galaxies. We show that the low luminosity galaxies will contribute appreciably to the stacked spectrum if the size-luminosity relation seen for H I at low- is also present at high-. Alternatively, large Ly halos seen around LBGs could also explain our measurements.
23 Pages, 15 Figures, Accepted for Publication in MNRAS Main Journal
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