4.7 Article

Metal-rich damped/subdamped Lyman α quasar absorbers at z < 1

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BLACKWELL PUBLISHING
DOI: 10.1111/j.1365-2966.2006.10865.x

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galaxies : abundances; quasars : absorption lines; quasars : individual : SDSS J0134+0051; quasars : individual : SDSS J0256+0110; quasars : individual : SDSS J1107+0048; quasars : individual : SDSS J2328+0022

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Damped Lyman alpha absorbers (DLAs), seen in absorption against a background quasar, provide the most detailed probes available of element abundances in the Universe over > 90 per cent of its age. DLAs can be used to observationally measure the global mean metallicity in the Universe and its evolution with time. Paradoxically, these observations are more difficult at lower redshifts, where the absorber rest-frame ultraviolet (UV) spectra are cut-off due to the atmospheric absorption. We present here high-resolution Very Large Telescope/Ultraviolet and Visual Echelle Spectrograph observations of several elements contained in three DLAs and one sub-DLA with . We detect Mg 1, Mg ii, Fe ii, Zn ii, Cr ii, Mn ii, Ti ii and Ca ii. Our observations more than double the high-resolution sample of [Zn/H] at z < 1. We also report the discovery of three metal-rich systems, whereas most previous measurements show low N-H I-weighted mean metallicity projecting to about 1/6th solar level at z = 0. We derive [Zn/H] = -0.11 +/- 0.04 at z(abs) = 0.725, [Zn/H] = -0.54 +/- 0.20 at z(abs) = 0.740 and [Zn/H] = -0.49 +/- 0.22 at z(abs) = 0.652 plus one additional upper limit ([Zn/H] < -0.36 at z(abs) = 0.842). These measurements confirm the existence of quasar absorbers with relatively high metallicities based on abundance estimates free from the effect of dust depletion. Possible implications of these results for the metallicity of neutral gas phase in the past approximate to 8 Gyr are presented and compared with models.

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