Silicon and iron dust in gamma-ray burst host galaxy absorbers
arXiv:1910.03207 · doi:10.1093/mnras/stz2827
Abstract
Depletion studies provide a way to understand the chemical composition of interstellar dust grains. We here examine 23 gamma-ray bursts (GRB) optical afterglow spectra (spanning 0.6<z<5.0) and compare their silicon and iron dust-phase column densities with different extinction curve parameters to study the composition of the interstellar dust grains in these high-redshift GRB host galaxies. The majority of our sample (87%) show featureless extinction curves and only vary in shape. We observe strong correlations (with >96% significance) between the total-to-selective extinction, R_V, and the dust-phase column densities of Si and Fe. Since a large fraction of interstellar iron is locked in silicate grains, this indicates that high Si and Fe depletion leads to an increase in the fraction of large silicate grains and vice versa. This suggests that silicates play a vital role to induce the entire extinction at any wavelength. On the other hand, the far-UV extinction is usually attributed to the presence of small silicates. However, we find no trend between the far-UV parameter of the extinction curve, c_4, and the abundance of Si and Fe in the dust phase. We, therefore, propose that the far-UV extinction could be a combined effect of small (probably nanoparticles) dust grains from various species.
8 pages, 2 figures, 1 table, accepted in MNRAS
References in corpus (23)
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- Galactic chemical evolution: Carbon through Zinc
- An Analysis of the Shapes of Interstellar Extinction Curves. V. The IR-Through-UV Curve Morphology
- The evolution of amorphous hydrocarbons in the ISM: dust modelling from a new vantage point
- Metallicity Evolution of Damped Lyman-alpha Systems out to z~5
- A cosmic abundance standard: chemical homogeneity of the solar neighbourhood and the ISM dust-phase composition
- The shape and composition of interstellar silicate grains
- Condensation of dust in the ejecta of type II-P supernovae
- Modelling Dust Evolution in Galaxies with a Multiphase, Inhomogeneous ISM
- Evolution of the dust-to-metals ratio in high-redshift galaxies probed by GRB-DLAs
- A hidden reservoir of Fe/FeS in interstellar silicates?
- Dust-depletion sequences in damped Lyman-α absorbers: a unified picture from low-metallicity systems to the Galaxy
- The properties of the 2175AA extinction feature discovered in GRB afterglows
- Modeling the Anomalous Microwave Emission with Spinning Nanoparticles: No PAHs Required
- The distribution of equivalent widths in long GRB afterglow spectra
- Unveiling the Secrets of Metallicity and Massive Star Formation Using DLAs along Gamma-ray Bursts
- Extinction and metal column density of HI regions up to redshift z~2
- A new galactic chemical evolution model with dust: results for dwarf irregular galaxies and DLA systems
- A Lyα blob and zabs {\approx} zem damped Lyα absorber in the dark matter halo of the binary quasar Q 0151+048
- Interstellar Silicon Depletion and the Ultraviolet Extinction
- Missing Fe: hydrogenated iron nanoparticles
- Quasar 2175 Å dust absorbers II: Correlation analysis and relationship with other absorption line systems
- On the dust properties of high redshift molecular clouds and the connection to the 2175 Å extinction bump