The Molecular Clouds Fueling a 1/5 Solar Metallicity Starburst
arXiv:1607.01779 · doi:10.3847/0004-637X/828/1/50
Abstract
Using the Atacama Large Millimeter/submillimeter Array, we have made the first high spatial and spectral resolution observations of the molecular gas and dust in the prototypical blue compact dwarf galaxy II Zw 40. The CO(2-1) and CO(3-2) emission is clumpy and distributed throughout the central star-forming region. Only one of eight molecular clouds has associated star formation. The continuum spectral energy distribution is dominated by free-free and synchrotron: at 870, only 50% of the emission is from dust. We derive a CO-to-H conversion factor by several methods including a new method that uses simple photodissocation models and resolved CO line intensity measurements to derive a relationship that uniquely predicts for a given metallicity. We find that the CO-to-H conversion factor is 4 to 35 times that of the Milky Way (18.1 to 150.5 M / (K km/s pc)). The star formation efficiency of the molecular gas at least 10 times higher than that found in normal spiral galaxies, which is likely due to the burst-dominated star formation history of II Zw 40 rather than an intrinsically higher efficiency. The molecular clouds within II Zw 40 resemble those in other strongly interacting systems like the Antennae: overall they have high size-linewidth coefficients and molecular gas surface densities. These properties appear to be due to the high molecular gas surface densities produced in this merging system rather than to increased external pressure. Overall, these results paint a picture of II Zw 40 as a complex, rapidly evolving system whose molecular gas properties are dominated by the large-scale gas shocks from its on-going merger.
ApJ accepted, 27 pages, 20 figures, 6 tables
References in corpus (13)
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- Bias-free Measurement of Giant Molecular Cloud Properties
- ALMA Reveals the Molecular Medium Fueling the Nearest Nuclear Starburst
- The Global Evolution of Giant Molecular Clouds. I: Model Formulation and Quasi-Equilibrium Behavior
- TiNy Titans: The Role of Dwarf-Dwarf Interactions in the Evolution of Low Mass Galaxies
- Molecular Gas in the Low Metallicity, Star Forming Dwarf IC 10
- ALMA Observations of the Antennae Galaxies: I. A New Window on a Prototypical Merger
- The triggering of starbursts in low-mass galaxies
- Highly efficient star formation in NGC 5253 possibly from stream-fed accretion
- The Physical Conditions in a Pre Super Star Cluster Molecular Cloud in the Antennae Galaxies
- Spitzer View of Young Massive Stars in the LMC HII Complexes. II. N159
- A New Hubble Space Telescope Distance to NGC 1569: Starburst Properties and IC 342 Group Membership
- The HI Chronicles of LITTLE THINGS BCDs II: The Origin of IC 10's HI Structure
Cited by in corpus (8)
- Revisiting the Integrated Star Formation Law. Paper I: Non-Starbursting Galaxies
- The final data release of ALLSMOG: a survey of CO in typical local low-M* star-forming galaxies
- ALMA Reveals Potential Localized Dust Enrichment from Massive Star Clusters in II Zw 40
- CO(2-1) Survey at 9 parsec resolution in the SMC
- Ultra-Diffuse Galaxies as Extreme Star-forming Environments II: Star Formation and Pressure Balance in HI-Rich UDGs
- The impact of carbon and oxygen abundances on the metal-poor initial mass function
- A panchromatic view of star cluster formation in a simulated dwarf galaxy starburst
- Sequential Star Formation in the Young SMC Region NGC 602: Insights from ALMA