Extended warm and dense gas towards W49A: starburst conditions in our Galaxy?
arXiv:1204.0390 · doi:10.1051/0004-6361/201118582
Abstract
The star formation rates in starburst galaxies are orders of magnitude higher than in local star-forming regions, and the origin of this difference is not well understood. We use sub-mm spectral line maps to characterize the physical conditions of the molecular gas in the luminous Galactic star-forming region W49A and compare them with the conditions in starburst galaxies. We probe the temperature and density structure of W49A using H_2CO and HCN line ratios over a 2'x2' (6.6x6.6 pc) field with an angular resolution of 15" (~0.8 pc) provided by the JCMT Spectral Legacy Survey. We analyze the rotation diagrams of lines with multiple transitions with corrections for optical depth and beam dilution, and estimate excitation temperatures and column densities. Comparing the observed line intensity ratios with non-LTE radiative transfer models, our results reveal an extended region (about 1'x1', equivalent to ~3x3 pc at the distance of W49A) of warm (> 100 K) and dense (>10^5 cm^-3) molecular gas, with a mass of 2x10^4 - 2x10^5 M_Sun (by applying abundances derived for other regions of massive star-formation). These temperatures and densities in W49A are comparable to those found in clouds near the center of the Milky Way and in starburst galaxies. The highly excited gas is likely to be heated via shocks from the stellar winds of embedded, O-type stars or alternatively due to UV irradiation, or possibly a combination of these two processes. Cosmic rays, X-ray irradiation and gas-grain collisional heating are less likely to be the source of the heating in the case of W49A.
Accepted for publication in A&A; 11 pages, 9 figures
References in corpus (8)
- Diagnostics of irradiated dense gas in galaxy nuclei. II. A grid of XDR and PDR models
- Spatial distribution of interstellar gas in the innermost 3 kpc of our Galaxy
- WFCAM, Spitzer-IRAC and SCUBA observations of the massive star forming region DR21/W75: I. The collimated molecular jets
- Molecular gas in extreme star-forming environments: the starbursts Arp220 and NGC6240 as case studies
- Mechanical feedback in the molecular ISM of luminous IR galaxies
- Formaldehyde as a Tracer of Extragalactic Molecular Gas I. Para-H_2CO Emission From M 82
- The JCMT Spectral Legacy Survey
- Hard X-rays from Ultra-Compact HII Regions in W49A
Cited by in corpus (20)
- Photodissociation and X-Ray Dominated Regions
- ATLASGAL --- properties of compact HII regions and their natal clumps
- Predictions for the CO emission of galaxies from a coupled simulation of galaxy formation and photon dominated regions
- Revealing the physical properties of molecular gas in Orion with a large scale survey in J=2-1 lines of 12CO, 13CO and C18O
- Structure of photodissociation fronts in star-forming regions revealed by observations of high-J CO emission lines with Herschel
- Star formation in Galactic spiral arms and the inter-arm regions
- 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
- 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
- ATLASGAL-selected massive clumps in the inner Galaxy: VI. Kinetic temperature and spatial density measured with formaldehyde
- Probing the role of polycyclic aromatic hydrocarbons in the photoelectric heating within photodissociation regions
- Kinetic temperature of massive star-forming molecular clumps measured with formaldehyde. III. The Orion Molecular Cloud 1
- The mid-infrared appearance of the Galactic Mini-Starburst W49A
- CO Spectral Line Energy Distributions in Galactic Sources: Empirical Interpretation of Extragalactic Observations
- 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
- Identification of molecular clouds in emission maps: a comparison between methods in the \ce{^{13}CO}/\ce{C^{18}O} () Heterodyne Inner Milky Way Plane Survey
- 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
- Kinetic temperature of massive star-forming molecular clumps measured with formaldehyde V. The massive filament DR21