The Milky Way Project and ATLASGAL: The distribution and physical properties of cold clumps near infrared bubbles
arXiv:1602.06982 · doi:10.3847/0004-637X/825/2/142
Abstract
We present a statistical study of the distribution and physical properties of cold dense material in and around the inner Galactic Plane near infrared bubbles as catalogued by the Milky Way Project citizen scientists. Using data from the ATLASGAL 870 um survey, we show that 48 +/- 2% of all cold clumps in the studied survey region (|l| <= 65 degrees, |b| <= 1 degree) are found in close proximity to a bubble, and 25 +/- 2% appear directly projected towards a bubble rim. A two-point correlation analysis confirms the strong correlation of massive cold clumps with expanding bubbles. It shows an overdensity of clumps along bubble rims that grows with increasing bubble size, which shows how interstellar medium material is reordered on large scales by bubble expansion around regions of massive star formation. The highest column density clumps appear resistent to the expansion, remaining overdense towards the bubbles' interior rather than being swept up by the expanding edge. Spectroscopic observations in ammonia show that cold dust clumps near bubbles appear to be denser, hotter and more turbulent than those in the field, offering circumstantial evidence that bubble-associated clumps are more likely to be forming stars. These observed differences in physical conditions persist for beyond the region of the bubble rims.
accepted for publication in ApJ
References in corpus (14)
- Theory of Star Formation
- The earliest phases of high-mass star formation: a 3 square degree millimeter continuum mapping of Cygnus X
- The Dynamics of Radiation Pressure-Dominated HII Regions
- Evidence for the Strong Effect of Gas Removal on the Internal Dynamics of Young Stellar Clusters
- ATLASGAL --- towards a complete sample of massive star forming clumps
- Resolution of the Distance Ambiguity for Galactic HII Regions
- Star formation around RCW 120, the perfect bubble
- Tidally Triggered Star Formation in Close Pairs of Galaxies: Major and Minor Interactions
- The dangers of being trigger--happy
- Triggered massive-star formation on the borders of Galactic HII regions. IV- Star formation at the periphery of Sh2-212
- Ionisation-induced star formation II: External irradiation of a turbulent molecular cloud
- Photoionisation Feedback in a Self-Gravitating, Magnetised, Turbulent Cloud
- The Milky Way Project: Leveraging Citizen Science and Machine Learning to Detect Interstellar Bubbles
- Massive Star Forming Regions in the Galaxy using the Spitzer GLIMPSE Survey
Cited by in corpus (22)
- The JCMT Plane Survey: First complete data release - emission maps and compact source catalogue
- Star formation towards the Galactic HII region RCW120
- The Milky Way Project Second Data Release: Bubbles and Bow Shocks
- HII regions and high-mass starless clump candidates II. Fragmentation and induced star formation at ~0.025 pc scale: An ALMA continuum study
- Spatial distribution of star formation related to ionized regions throughout the inner Galactic plane
- Herschel observations of the Galactic HII region RCW 79
- FEEDBACK from the NGC7538 HII region
- ALMA observations of RCW 120 Fragmentation at 0.01pc scale
- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions -XIII. Ongoing triggered star formation within clump-fed scenario found in the massive ( ) clump
- The location, clustering, and propagation of massive star formation in giant molecular clouds
- The FluxCompensator: Making Radiative Transfer Models of hydrodynamical Simulations Directly Comparable to Real Observations
- HII regions and high-mass starless clump candidates I: Catalogs and properties
- APEX CO observations towards the photodissociation region of RCW120
- Molecular environs and triggered star formation around the large Galactic infrared bubble N 24
- Two-Dimensional Molecular Gas and ongoing star formation around H II region Sh2-104
- CO observations and investigation of triggered star formation towards N10 infrared bubble and surroundings
- Star formation timescale in the molecular filament WB 673
- Physical characterization of S169: A prototypical IR bubble associated with the massive star-forming region IRAS12326-6245
- A Molecular Line Investigation of the Interaction between Mid-infrared Bubbles and the Interstellar Medium
- Star formation toward the H~II region IRAS 10427-6032
- A complete survey of filaments in Cygnus X
- ALMAGAL VIII. Early phases of triggered star formation in source AG286.07161.8229