Elemental depletions in the Magellanic Clouds and the evolution of depletions with metallicity
arXiv:1503.08852 · doi:10.1088/0004-637X/811/2/78
Abstract
We present a study of the composition of gas and dust in the Large and Small Magellanic Clouds (LMC and SMC, together -- the MCs) as measured by UV absorption spectroscopy. We have measured P II and Fe II along 85 sightlines toward the MCs using archival FUSE observations. For 16 of those sightlines, we have measured Si II, Cr II, and Zn II from new HST COS observations. We have combined these measurements with H I and H column densities and reference stellar abundances from the literature to derive gas-phase abundances, depletions, and gas-to-dust ratios (GDRs). 80 of our 84 P measurements and 13 of our 16 Zn measurements are depleted by more than 0.1 decades, suggesting that P and Zn abundances are not accurate metallicity indicators at and above the metallicity of the SMC. The maximum P and Zn depletions are the same in the MW, LMC, and SMC. Si, Cr, and Fe are systematically less depleted in the SMC than in the MW or LMC. The minimum Si depletion in the SMC is consistent with zero. Our depletion-derived GDRs broadly agree with GDRs from the literature. The GDR varies from location to location within a galaxy by a factor of up to 2 in the LMC and up to 5 in the SMC. This variation is evidence of dust destruction and/or growth in the diffuse neutral phase of the interstellar medium.
Submitted to ApJ
References in corpus (15)
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- Metallicity Evolution of Damped Lyman-alpha Systems out to z~5
- The Spitzer Survey of the Small Magellanic Cloud: FIR Emission and Cold Gas in the SMC
- Inefficient Star Formation In Extremely Metal Poor Galaxies
- Dust and Gas in the Magellanic Clouds from the HERITAGE Herschel Key Project. I. Dust Properties and Insights into the Origin of the Submm Excess Emission
- The Chemical Enrichment History of the Small Magellanic Cloud and Its Gradients
- Dust and Gas in the Magellanic Clouds from the HERITAGE Herschel Key Project. II. Gas-to-Dust Ratio Variations across ISM Phases
- The equilibrium view on dust and metals in galaxies: Galactic outflows drive low dust-to-metal ratios in dwarf galaxies
- Dust origin in late-type dwarf galaxies: ISM growth vs. type II supernovae
- Investigating Nearby Star-Forming Galaxies in the Ultraviolet with HST/COS Spectroscopy. I: Spectral Analysis and Interstellar Abundance Determinations
- Elemental Abundance Measurements in Low-redshift Damped Lyman Alpha Absorbers
- Detection of Neutral Phosphorus in the Near Ultraviolet Spectra of Late-Type Stars
- The Dust-to-Gas Ratio in the Small Magellanic Cloud Tail
- Properties and Origin of the High-Velocity Gas Toward the Large Magellanic Cloud
- The Chemical Evolution of Phosphorus
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- Dust in the Wind: Composition and Kinematics of Galaxy Outflows at the Peak Epoch of Star Formation
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