W49A: A starburst triggered by expanding shells
arXiv:1011.1166 · doi:10.1051/0004-6361/201014975
Abstract
W49A is a giant molecular cloud which harbors some of the most luminous embedded clusters in the Galaxy. However, the explanation for this starburst-like phenomenon is still under debate. Methods. We investigated large-scale Spitzer mid-infrared images together with a Galatic Ring Survey 13CO J = 1-0 image, complemented with higher resolution (~ 11 arcsec) 13CO J = 2-1 and C18O J = 2-1 images over a ~ 15 x 13 pc^2 field obtained with the IRAM 30m telescope. Two expanding shells have been identified in the mid-infrared images, and confirmed in the position-velocity diagrams made from the 13CO J = 2-1 and C18O J = 2-1 data. The mass of the averaged expanding shell, which has an inner radius of ~ 3.3 pc and a thickness of ~ 0.41 pc, is about 1.9 x 10^4 M*. The total kinetic energy of the expanding shells is estimated to be ~ 10^49 erg which is probably provided by a few massive stars, whose radiation pressure and/or strong stellar winds drive the shells. The expanding shells are likely to have a common origin close to the two ultracompact Hii regions (source O and source N), and their expansion speed is estimated to be ~ 5 km/s, resulting in an age of ~ 3-7 x 10^5 years. In addition, on larger (~ 35 x 50 pc^2) scales, remnants of two gas ejections have been identified in the 13CO J = 1 - 0 data. Both ejections seem to have the same center as the expanding shells with a total energy of a few times 10^50 erg. The main driving mechanism for the gas ejections is unclear, but likely related to the mechanism which triggers the starburst in W49A.
References in corpus (6)
- Theory of Star Formation
- The Boston University-Five College Radio Astronomy Observatory Galactic Ring Survey
- The Dynamics of Radiation Pressure-Dominated HII Regions
- IR Dust Bubbles: Probing the Detailed Structure and Young Massive Stellar Populations of Galactic HII Regions
- Molecular Rings and the Thickness of Star-Forming Clouds
- Hard X-rays from Ultra-Compact HII Regions in W49A
Cited by in corpus (24)
- The dangers of being trigger--happy
- Infall through the evolution of high-mass star-forming clumps
- MUSCLE W49 : A Multi-Scale Continuum and Line Exploration of the Most Luminous Star Formation Region in the Milky Way. I. Data and The Mass Structure of the Giant Molecular Cloud
- Cloud Structure of Galactic OB Cluster Forming Regions from Combining Ground and Space Based Bolometric Observations
- The ATLASGAL survey: The sample of young massive cluster progenitors
- LEGO II: A 3 mm molecular line study covering 100 pc of one of the most actively star-forming portions within the Milky Way Disc
- The effect of photoionising feedback on the shaping of hierarchically-forming stellar clusters
- Star Formation Across the W3 Complex
- Do high energy astrophysical neutrinos trace star formation?
- Feedback in W49A diagnosed with radio recombination lines and models
- Dense molecular gas toward W49A: A template for extragalactic starbursts?
- Young Stellar Objects in the Massive Star Forming Region W49
- N131: A dust bubble born from the disruption of a gas filament
- The mid-infrared appearance of the Galactic Mini-Starburst W49A
- Extended warm and dense gas towards W49A: starburst conditions in our Galaxy?
- Physical and chemical differentiation of the luminous star-forming region W49A - Results from the JCMT Spectral Legacy Survey
- The Massive Stellar Population of W49: A Spectroscopic Survey
- Kinematics and star formation of hub-filament systems in W49A
- Core to ultracompact HII region evolution in the W49A massive protocluster
- Extremely Energetic Outflow and Decelerated Expansion in W49N
- Extreme star formation in the Milky Way: Luminosity distributions of young stellar objects in W49A and W51
- SOFIA/GREAT observations of OD and OH rotational lines towards high-mass star forming regions
- Surveying the Giant HII Regions of the Milky Way with SOFIA: III. W49A
- ATLASGAL-selected high-mass clumps in the inner Galaxy: XI. Morphology and kinematics of warm inner envelopes