Evolution of dust and molecular hydrogen in the Magellanic System
arXiv:1406.1642 · doi:10.1093/mnras/stu1132
Abstract
We investigate the evolution of the interstellar medium (ISM) in self-consistent, chemodynamical simulations of the Magellanic Clouds (MCs) during their recent (z<0.3) past. An explicit modelling of dust and molecular hydrogen lifecycles enables the comparison of our models against the observed properties of the ISM, including elemental depletion from the gas-phase. Combining this model with a tidal-dominated paradigm for the formation for the Magellanic Stream and Bridge, we reproduce the age-metallicity relations, long gas depletion timescales, and presently observed dust and molecular hydrogen masses of the MCs to within their respective uncertainties. We find that these models' enrichment depends sensitively on the processing of dust within the ISM and the dynamical influence of external tides/stellar bars. The ratio of characteristic dust destruction timescales in our SMC and LMC models, a governing parameter of our models' evolution, is consistent with estimates based on observed supernova (SN) rates. Our reference MC models tend to exhibit the disputed universal dust-to-metal ratio, which we argue stems from the adoption of high SNe II condensation efficiencies. Our models are the first to reproduce the one-tenth solar metallicity of the Stream/Leading Arm following tidal stripping of the SMC; the hypothesis that the LMC contributes a metal-rich filament to the Stream, as implied by recent kinematic and abundance analyses, is also appraised in this study.
28 pages, 25 figures, 3 tables; accepted for publication in MNRAS
References in corpus (33)
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- Dust Masses, PAH Abundances, and Starlight Intensities in the SINGS Galaxy Sample
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- Molecular Hydrogen and Global Star Formation Relations in Galaxies
- On the onset of galactic winds in quiescent star forming galaxies
- On the frequency, intensity and duration of starburst episodes triggered by galaxy interactions and mergers
- The Origin of the Magellanic Stream and Its Leading Arm
- The Metallicity of Galaxy Disks: Infall versus Outflow
- The Baryon Content of Extremely Low Mass Dwarf Galaxies
- Environmental Dependence of the Kennicutt-Schmidt Relation in Galaxies
- The Spitzer Survey of the Small Magellanic Cloud: FIR Emission and Cold Gas in the SMC
- Metal and molecule cooling in simulations of structure formation
- Metal and molecule cooling in simulations of structure formation
- Calcium II Triplet Spectroscopy of LMC Red Giants. I. Abundances and Velocities for a Sample of Populous Clusters
- The Chemical Enrichment History of the Large Magellanic Cloud
- The Chemical Enrichment History of the Small Magellanic Cloud and Its Gradients
- The Source of Ionization along the Magellanic Stream
- The Magellanic Bridge: The Nearest Purely Tidal Stellar Population
- Dust origin in late-type dwarf galaxies: ISM growth vs. type II supernovae
- GALEX observations of Low Surface Brightness Galaxies: UV color and star formation efficiency
- The Mass-Loss Return From Evolved Stars to the LMC: Empirical Relations for Excess Emission at 8 and 24 μm
- Incorporating the molecular gas phase in galaxy-size numerical simulations: first applications in dwarf galaxies
- Where is the Molecular Hydrogen in Damped Lyman-Alpha Absorbers?
- Supergiant Shells and Molecular Cloud Formation in the LMC
- Physical parameters of 15 intermediate-age LMC clusters from modelling of HST colour-magnitude diagrams
- Star formation laws and thresholds from ISM structure and turbulence
- Dynamical Influences of the Last Magellanic Interaction On the Magellanic Clouds
- On the (in)variance of the dust-to-metals ratio in galaxies
- Metallicity and Physical Conditions in the Magellanic Bridge
- 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 iron abundance of the Magellanic Bridge
- Polycyclic aromatic hydrocarbons in the dwarf galaxy IC 10
Cited by in corpus (9)
- The VMC Survey - XIV. First results on the look-back time star-formation rate tomography of the Small Magellanic Cloud
- The impact of stellar feedback on the density and velocity structure of the interstellar medium
- Two-size approximation: a simple way of treating the evolution of grain size distribution in galaxies
- The VMC survey -- XXXIX: Mapping metallicity trends in the Small Magellanic Cloud using near-infrared passbands
- Cosmic evolution of dust in galaxies: Methods and preliminary results
- Spatio-temporal map of star clusters in the Magellanic Clouds using Gaia: Synchronized peaks and radial shrinkage of cluster formation
- Chemical evolution of galaxies with radiation-driven dust wind
- The Evolution of Magellanic-like Galaxy Pairs and The Production of Magellanic Stream Analogues in Simulations with Tides, Ram Pressure, and Stellar Feedback
- Three-dimensional geometry and dust/gas ratios in massive star forming regions over the entire LMC as revealed by IRSF/SIRIUS survey