Element Abundances at High-redshift: Magellan MIKE Observations of sub-Damped Lyman-alpha Absorbers at 1.7 < z <2.4
arXiv:1307.7103 · doi:10.1093/mnras/stt1388
Abstract
We present chemical abundance measurements from high-resolution observations of 5 sub-damped Lyman-alpha absorbers at 1.7 < z < 2.4 observed with the Magellan Inamori Kyocera Echelle (MIKE) spectrograph on the 6.5-m Magellan II Clay telescope. Lines of Zn II, Mg I, Mg II, Al II, Al III, S II, Si II, Si IV, C II, C II*, C IV, Ni II, Mn II and Fe II were detected and column densities were determined. The metallicity of the absorbing gas, inferred from the nearly undepleted element Zn, is in the range of < -0.95 to +0.25 dex for the five absorbers in our sample, with three of the systems being near-solar or super-solar. We also investigate the effect of ionisation on the observed abundances using photoionisation modelling. Combining our data with other sub-DLA and DLA data from the literature, we report the most complete existing determination of the metallicity vs. redshift relation for sub-DLAs and DLAs. We confirm the suggestion from previous investigations that sub-DLAs are, on average, more metal-rich than DLAs and evolve faster. We also discuss relative abundances and abundance ratios in these absorbers. The more metal-rich systems show significant dust depletion levels, as suggested by the ratios [Zn/Cr] and [Zn/Fe]. For the majority of the systems in our sample, the [Mn/Fe] vs. [Zn/H] trend is consistent with that seen previously for lower-redshift sub-DLAs. We also measure the velocity width values for the sub-DLAs in our sample from unsaturated absorption lines of Fe II 2344, 2374, 2600 A, and examine where these systems lie in a plot of metallicity vs. velocity dispersion. Finally, we examine cooling rate vs. H I column density in these sub-DLAs, and compare this with the data from DLAs and the Milky Way ISM. We find that most of the systems in our sample show higher cooling rate values compared to those seen in the DLAs.
Accepted for publication in the Monthly Notices of The Royal Astronomical Society
References in corpus (20)
- The Mass-Metallicity Relation at z~2
- The 2013 Release of Cloudy
- The Galaxy Population Hosting Gamma-Ray Bursts
- Metallicity Evolution of Damped Lyman-alpha Systems out to z~5
- Velocity-Metallicity Correlation for high-z DLA Galaxies: Evidence for a Mass-Metallicity Relation?
- Molecular hydrogen in high-redshift Damped Lyman-alpha systems: The VLT/UVES database
- Reconciling the Metallicity Distributions of Gamma-ray Burst, Damped Lyman-alpha, and Lyman-break Galaxies at z=3
- New perspectives on strong z=0.5 MgII absorbers: are halo-mass and equivalent width anti-correlated?
- The Enrichment History of Baryons in the Universe
- The Role of Sub-damped Lyman-alpha Absorbers in the Cosmic Evolution of Metals
- Metal-rich Damped/sub-Damped Lyman-alpha Quasar Absorbers at z<1
- Elemental Abundance Measurements in Low-redshift Damped Lyman Alpha Absorbers
- Metal abundances at z<1.5: new measurements in sub-Damped Lyman-alpha Absorbers
- New abundance determinations in z < 1.5 QSO absorbers: seven sub-DLAs and one DLA
- The chemical compositions of 10 new sub-DLAs and strong Lyman-limit systems at z < 1.5
- Measurements of CaII absorption, metals, and dust in a sample of z~1 DLAs and subDLAs
- Are the kinematics of DLAs in agreement with their arising in the gas disks of galaxies?
- New Magellan Inamori Kyocera Echelle Observations of z<1.5 sub-damped Lyman-alpha systems
- Revisiting the origin of the high metallicities of sub-damped Lyman-alpha systems
- Emission Line Spectroscopy of a Damped Lyman-alpha Absorbing Galaxy at z = 0.437
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- The physical properties of z>2 Lyman limit systems: new constraints for feedback and accretion models
- The cosmic evolution of dust-corrected metallicity in the neutral gas
- The ESO UVES Advanced Data Products Quasar Sample - VI. Sub-Damped Lyman- Metallicity Measurements and the Circum-Galactic Medium
- Dust-depletion sequences in damped Lyman-α absorbers: a unified picture from low-metallicity systems to the Galaxy
- The Cosmic Evolution of the Metallicity Distribution of Ionized Gas Traced by Lyman Limit Systems
- Interstellar Gas-phase Element Depletions in the Small Magellanic Cloud: A Guide to Correcting for Dust in QSO Absorption Line Systems
- Hubble Space Telescope Observations of Sub-Damped Lyman-alpha Absorbers at z < 0.5, and Implications for Galaxy Chemical Evolution
- The Keck+Magellan Survey for Lyman Limit Absorption III: Sample Definition and Column Density Measurements
- The COS CGM Compendium. II: Metallicities of the Partial and Lyman Limit Systems at z<1
- An HST/COS survey of molecular hydrogen in DLAs & sub-DLAs at z < 1: Molecular fraction and excitation temperature
- The Mean Metal-line Absorption Spectrum of DLAs in BOSS
- Molecular Hydrogen Absorption from the Halo of a z ~ 0.4 Galaxy
- Atomic data for S II - Toward Better Diagnostics of Chemical Evolution in High-redshift Galaxies
- Detection of emission lines from z ~ 3 DLAs towards the QSO J2358+0149
- Stellar masses, metallicity gradients and suppressed star formation revealed in a new sample of absorption selected galaxies
- Metals and dust in the neutral ISM: the Galaxy, Magellanic Clouds, and damped Lyman-α absorbers
- Early metal enrichment of gas-rich galaxies at z~5
- Atomic data for Zn II - Improving Spectral Diagnostics of Chemical Evolution in High-redshift Galaxies
- Probing Structure in Cold Gas at with Gravitationally Lensed Quasar Sight Lines
- Element Abundances in a Gas-rich Galaxy at z = 5: Clues to the Early Chemical Enrichment of Galaxies
- Sub-damped Lyman alpha systems in the XQ-100 survey II -- Chemical evolution at 2.4<z<4.3
- Metal-enriched Galaxies in the First ~1 Billion Years: Evidence of a Smooth Metallicity Evolution at z ~ 5
- VLT/UVES observations of peculiar alpha abundances in a sub-DLA at z ~ 1.8 towards the quasar B1101-26
- Magellan LDSS3 emission confirmation of galaxies hosting metal-rich Lyman-alpha absorption systems
- Estimation of physical conditions in the cold phase of the ISM in the sub-DLA system at z = 2.06 in the spectrum of the quasar J2123-0050
- Gas Accretion via Lyman Limit Systems
- A high-redshift quasar absorber without CIV - a galactic outflow caught in the act?
- Metals and a Search for Molecules in the Distant Universe: Magellan MIKE Observations of sub-DLAs at 2<z<3