Star Formation Rates of Massive Molecular Clouds in the Central Molecular Zone
arXiv:1901.07779 · doi:10.3847/1538-4357/ab017d
Abstract
We investigate star formation at very early evolutionary phases in five massive clouds in the inner 500 pc of the Galaxy, the Central Molecular Zone. Using interferometer observations of HO masers and ultra-compact H II regions, we find evidence of ongoing star formation embedded in cores of 0.2 pc scales and 10 cm densities. Among the five clouds, Sgr C possesses a high (9%) fraction of gas mass in gravitationally bound and/or protostellar cores, and follows the dense (10 cm) gas star formation relation that is extrapolated from nearby clouds. The other four clouds have less than 1% of their cloud masses in gravitationally bound and/or protostellar cores, and star formation rates 10 times lower than predicted by the dense gas star formation relation. At the spatial scale of these cores, the star formation efficiency is comparable to that in Galactic disk sources. We suggest that the overall inactive star formation in these Central Molecular Zone clouds could be because there is much less gas confined in gravitationally bound cores, which may be a result of the strong turbulence in this region and/or the very early evolutionary stage of the clouds when collapse has only recently started.
ApJ accepted. SMA and VLA data are made public at https://doi.org/10.5281/zenodo.1436909 and analysis scripts are available at https://github.com/xinglunju/CMZclouds. 32 pages including 4 appendices, 20 figures, 7 tables
References in corpus (20)
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- Structural Analysis of Molecular Clouds: Dendrograms
- Multi-Scale CLEAN deconvolution of radio synthesis images
- The Critical Density and the Effective Excitation Density of Commonly Observed Molecular Dense Gas Tracers
- The dynamical evolution of molecular clouds near the Galactic Centre - I. Orbital structure and evolutionary timeline
- Intrinsically Red Sources observed by Spitzer in the Galactic Mid-Plane
- Spatial distribution of interstellar gas in the innermost 3 kpc of our Galaxy
- Star Formation in the Central 400 pc of the Milky Way: Evidence for a Population of Massive YSOs
- Magnetic Fields in High-Mass Infrared Dark Clouds
- The link between turbulence, magnetic fields, filaments, and star formation in the Central Molecular Zone cloud G0.253+0.016
- Turbulence sets the initial conditions for star formation in high-pressure environments
- The Survey of Water and Ammonia in the Galactic Center (SWAG): Molecular Cloud Evolution in the Central Molecular Zone
- Galactocentric variation of the gas-to-dust ratio and its relation with metallicity
- Accurate water maser positions from HOPS
- Water maser variability over 20 years in a large sample of star-forming regions: the complete database
- The W43-MM1 mini-starburst ridge, a test for star formation efficiency models
- The dynamics and star-forming potential of the massive Galactic centre cloud G0.253+0.016
- Abundant Methanol Masers but no New Evidence for Star Formation in GCM0.253+0.016
- Star formation in a high-pressure environment: An SMA view of the Galactic centre dust ridge
- A Large--Scale Spectroscopic Survey of Methanol and OH Line Emission from the Galactic Center: Observations and Data
Cited by in corpus (3)
- 'The Brick' is not a brick: A comprehensive study of the structure and dynamics of the Central Molecular Zone cloud G0.253+0.016
- Ultra-diffuse galaxies without dark matter
- Young massive star cluster formation in the Galactic Centre is driven by global gravitational collapse of high-mass molecular clouds