We present the measured gas-phase metal column densities in 155 sub-damped Ly α systems (subDLAs) with the aim to investigate the contribution of subDLAs to the chemical evolution of the Universe. The sample was identified within the absorber-blind XQ-100 quasar spectroscopic survey over the redshift range 2.4 ≤ zabs ≤ 4.3. Using all available column densities of the ionic species investigated (mainly C iv, Si ii, Mg ii, Si iv, Al ii, Fe ii, C ii, and O i; in order of decreasing detection frequency), we estimate the ionization-corrected gas-phase metallicity of each system using Markov chain Monte Carlo techniques to explore a large grid of cloudy ionization models. Without accounting for ionization and dust depletion effects, we find that the H i-weighted gas-phase metallicity evolution of subDLAs is consistent with damped Ly α systems (DLAs). When ionization corrections are included, subDLAs are systematically more metal poor than DLAs (between ≈0.5σ and ≈3σ significance) by up to ≈1.0 dex over the redshift range 3 ≤ zabs ≤ 4.3. The correlation of gas phase [Si/Fe] with metallicity in subDLAs appears to be consistent with that of DLAs, suggesting that the two classes of absorbers have a similar relative dust depletion pattern. As previously seen for Lyman limit systems, the gas phase [C/O] in subDLAs remains constantly solar for all metallicities indicating that both subDLAs and Lyman limit systems could trace carbon-rich ejecta, potentially in circumgalactic environments.

Berg, T., Fumagalli, M., D'Odorico, V., Ellison, S., Lopez, S., Becker, G., et al. (2021). Sub-damped Lyman α systems in the XQ-100 survey-II. Chemical evolution at 2.4 ≤ z ≤ 4.3. MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 502(3), 4009-4025 [10.1093/mnras/stab184].

Sub-damped Lyman α systems in the XQ-100 survey-II. Chemical evolution at 2.4 ≤ z ≤ 4.3

Fumagalli M.;
2021

Abstract

We present the measured gas-phase metal column densities in 155 sub-damped Ly α systems (subDLAs) with the aim to investigate the contribution of subDLAs to the chemical evolution of the Universe. The sample was identified within the absorber-blind XQ-100 quasar spectroscopic survey over the redshift range 2.4 ≤ zabs ≤ 4.3. Using all available column densities of the ionic species investigated (mainly C iv, Si ii, Mg ii, Si iv, Al ii, Fe ii, C ii, and O i; in order of decreasing detection frequency), we estimate the ionization-corrected gas-phase metallicity of each system using Markov chain Monte Carlo techniques to explore a large grid of cloudy ionization models. Without accounting for ionization and dust depletion effects, we find that the H i-weighted gas-phase metallicity evolution of subDLAs is consistent with damped Ly α systems (DLAs). When ionization corrections are included, subDLAs are systematically more metal poor than DLAs (between ≈0.5σ and ≈3σ significance) by up to ≈1.0 dex over the redshift range 3 ≤ zabs ≤ 4.3. The correlation of gas phase [Si/Fe] with metallicity in subDLAs appears to be consistent with that of DLAs, suggesting that the two classes of absorbers have a similar relative dust depletion pattern. As previously seen for Lyman limit systems, the gas phase [C/O] in subDLAs remains constantly solar for all metallicities indicating that both subDLAs and Lyman limit systems could trace carbon-rich ejecta, potentially in circumgalactic environments.
Articolo in rivista - Articolo scientifico
galaxies: high-redshift; galaxies: ISM; quasars: absorption lines;
English
22-gen-2021
2021
502
3
4009
4025
none
Berg, T., Fumagalli, M., D'Odorico, V., Ellison, S., Lopez, S., Becker, G., et al. (2021). Sub-damped Lyman α systems in the XQ-100 survey-II. Chemical evolution at 2.4 ≤ z ≤ 4.3. MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 502(3), 4009-4025 [10.1093/mnras/stab184].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/335715
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