METAL: The Metal Evolution, Transport, and Abundance in the Large Magellanic Cloud Hubble program. I. Overview and Initial Results
arXiv:1901.06027 · doi:10.3847/1538-4357/aaf8bb
Abstract
Metal Evolution, Transport, and Abundance in the LMC (METAL) is a large Cycle 24 program on the Hubble Space Telescope aimed at measuring dust extinction properties and interstellar depletions in the Large Magellanic Cloud (LMC) at half-solar metallicity. The 101-orbit program is comprised of COS and STIS spectroscopy toward 33 LMC massive stars between 1150 A and 3180 A, and parallel WFC3 imaging in 7 NUV-NIR filters. The fraction of silicon in the gas-phase (depletion) obtained from the spectroscopy decreases with increasing hydrogen column density. Depletion patterns for silicon differ between the Milky Way, LMC, and SMC, with the silicon depletion level offsetting almost exactly the metallicity differences, leading to constant gas-phase abundances in those galaxies for a given hydrogen column density. The silicon depletion correlates linearly with the absolute-to-selective extinction, R, indicating a link between gas depletion and dust grain size. Extinction maps are derived from the resolved stellar photometry in the parallel imaging, which can be compared to FIR images from Herschel and Spitzer to estimate the emissivity of dust at LMC metallicity. The full METAL sample of depletions, UV extinction curves, and extinction maps will inform the abundance, size, composition, and optical properties of dust grains in the LMC, comprehensively improve our understanding of dust properties, and the accuracy with which dust-based gas masses, star formation rates and histories in nearby and high-redshift galaxies are estimated. This overview paper describes the goals, design, data reduction, and initial results of the METAL survey.
28 pages, 15 figures
References in corpus (13)
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- Evolution of interstellar dust and stardust in the solar neighbourhood
- Metallicity Evolution of Damped Lyman-alpha Systems out to z~5
- The Panchromatic Hubble Andromeda Treasury X. Ultraviolet to Infrared Photometry of 117 Million Equidistant Stars
- 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
- GASS: The Parkes Galactic All-Sky Survey. Update: improved correction for instrumental effects and new data release
- Dust and Gas in the Magellanic Clouds from the HERITAGE Herschel Key Project. II. Gas-to-Dust Ratio Variations across ISM Phases
- A Problem with the Clustering of Recent Measures of the Distance to the Large Magellanic Cloud
- The equilibrium view on dust and metals in galaxies: Galactic outflows drive low dust-to-metal ratios in dwarf galaxies
- The dust budget crisis in high-redshift submillimetre galaxies
- Exploring wind-driving dust species in cool luminous giants I. Basic criteria and dynamical models of M-type AGB stars
- Low-temperature MIR to submillimeter mass absorption coefficient of interstellar dust analogues II: Mg and Fe-rich amorphous silicates
- Properties and Origin of the High-Velocity Gas Toward the Large Magellanic Cloud
Cited by in corpus (23)
- The Dust Attenuation Law in Galaxies
- METAL: The Metal Evolution, Transport, and Abundance in the Large Magellanic Cloud Hubble program. III. Interstellar Depletions, Dust-to-Metal, and Dust-to-Gas Ratios Versus Metallicity
- The Galactic Dust-Up: Modeling Dust Evolution in FIRE
- METAL: The Metal Evolution, Transport, and Abundance in the Large Magellanic Cloud Hubble program. II. Variations of interstellar depletions and dust-to-gas ratio within the LMC
- Resolving the Dust-to-Metals Ratio and CO-to-H Conversion Factor in the Nearby Universe
- X-ray properties of early-type stars in the Tarantula Nebula from T-ReX
- Optical and JWST Mid-IR Emission Line Diagnostics for Simultaneous IMBH and Stellar Excitation in z~0 Dwarf Galaxies
- Late-time cosmic evolution of dust: solving the puzzle
- Three-Dimensional Structure and Dust Extinction in the Small Magellanic Cloud
- The Warm Gas in the MW: A Kinematical Model
- Evidence of dust grain evolution from extinction mapping in the IC 63 photodissociation region
- Spatially Resolved Gas-phase Metallicity in FIRE-2 Dwarfs: Late-Time Evolution of Metallicity Relations in Simulations with Feedback and Mergers
- Far-ultraviolet Dust Extinction and Molecular Hydrogen in the Diffuse Milky Way Interstellar Medium
- UV Extinction as a More Fundamental Measure of Dust than E(B-V) or A(V)
- Braving the Storm: Quantifying Disk-wide Ionized Outflows in the Large Magellanic Cloud with ULLYSES
- Tracing the Formation of Molecular Clouds in a Low-Metallicity Galaxy: A HI Narrow Self-Absorption Survey of the Large Magellanic Cloud
- Neutral carbon in diffuse interstellar medium: abundance matching with H2 for DLAs at high redshifts
- IllustrisTNG and S2COSMOS: possible conflicts in the evolution of neutral gas and dust
- A Catalog of Stellar and Dust Properties for 500,000 Stars in the Southwest Bar of the Small Magellanic Cloud
- First detections of CO absorption in the Magellanic Clouds and direct measurement of the CO-to-H ratio
- Massive stars in the Tarantula Nebula: A Rosetta Stone for Extragalactic Supergiant HII Regions
- Astro2020: Unleashing the Potential of Dust Emission as a Window onto Galaxy Evolution
- Observed cosmic evolution of galaxy dust properties with metallicity and tensions with models