A mean density of for Central Molecular Zone clumps -- Evidences for shear-enabled pressure equilibrium in the Galactic Center
arXiv:1910.05015 · doi:10.3847/1538-4357/ab8c47
Abstract
We carry out a systematic study of the density structure of gas in the Central Molecular Zone (CMZ) in the Galactic center by extracting clumps from the APEX Telescope Large Area Survey of the Galaxy survey at 870 m. We find that the clumps follow a scaling of which corresponds to a characteristic density of () with a variation of , where we assumed a gas-to-dust mass ratio of 100. This characteristic density can be interpreted as the result of thermal pressure equilibrium between the molecular gas and the warm ambient interstellar medium. Such an equilibrium can plausibly be established since shear has approximately the same strength as self-gravity. Our findings may explain the fact that star formation in the CMZ is highly inefficient compared to the rest of the Milky Way disk. We also identify a population of clumps whose densities are two orders of magnitudes higher in the vicinity of the Sgr B2 region, which we propose are produced by collisions between the clumps of lower densities. For these collisions to occur, processes such as compressive tides probably have created the appropriate condition by assembling the clumps together.
Accepted for publication by the ApJ
References in corpus (20)
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- Star Formation in Disk Galaxies. I. Formation and Evolution of Giant Molecular Clouds via Gravitational Instability and Cloud Collisions
- The dynamical evolution of molecular clouds near the Galactic Centre - I. Orbital structure and evolutionary timeline
- The Nature of the Dense Core Population in the Pipe Nebula: Thermal Cores Under Pressure
- Large-scale filaments associated with Milky Way spiral arms
- The interplay between a galactic bar and a supermassive black hole: nuclear fueling in a sub-parsec resolution galaxy simulation
- The Galactic Centre Chimney
- The Bolocam Galactic Plane Survey IV: 1.1 and 0.35 mm Dust Continuum Emission in the Galactic Center Region
- The dynamical evolution of molecular clouds near the Galactic Centre - II. Spatial structure and kinematics of simulated clouds
- Galactocentric variation of the gas-to-dust ratio and its relation with metallicity
- Spectral imaging of the Sagittarius B2 region in multiple 3-mm molecular lines with the Mopra telescope
- A large catalogue of molecular clouds with accurate distances within 4 kpc of the Galactic disk
- Not that long time ago in the nearest galaxy: 3D slice of molecular gas revealed by a 110 years old flare of Sgr A*
- L1188: a promising candidate of cloud-cloud collision triggering the formation of the low- and intermediate-mass stars
- The dynamical evolution of molecular clouds near the Galactic Centre -- III. Tidally--induced star formation in protocluster clouds
- Criteria for gravitational instability and quasi-isolated gravitational collapse in turbulent medium
- A multi-wavelength observation and investigation of six infrared dark clouds
- X-ray Observation of a Magnetized Hot Gas Outflow in the Galactic Center Region
- Probing the initial conditions of high-mass star formation. III. Fragmentation and triggered star formation
- Star formation in IRDC G31.97+0.07
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- Revisiting The Mass-Size Relation Of Structures In Molecular Clouds
- Molecular contrails -- triggered contraction by passages of massive objects through molecular clouds
- Molecular Clouds at the Edge of the Galaxy II. Physical properties and scaling relations
- Quantifying the anisotropic density structure of the Central Molecular Zone -- a 2D correlation function approach