Disentangling the excitation conditions of the dense gas in M17 SW
arXiv:1508.06699 · doi:10.1051/0004-6361/201526441
Abstract
We probe the chemical and energetic conditions in dense gas created by radiative feedback through observations of multiple CO, HCN and HCO transitions toward the dense core of M17 SW. We used the dual band receiver GREAT on board the SOFIA airborne telescope to obtain maps of the , , and transitions of CO. We compare these maps with corresponding APEX and IRAM 30m telescope data for low- and mid- CO, HCN and HCO emission lines, including maps of the HCN and HCO transitions. The excitation conditions of CO, HCO and HCN are estimated with a two-phase non-LTE radiative transfer model of the line spectral energy distributions (LSEDs) at four selected positions. The energy balance at these positions is also studied. We obtained extensive LSEDs for the CO, HCN and HCO molecules toward M17 SW. The LSED shape, particularly the high- tail of the CO lines observed with SOFIA/GREAT, is distinctive for the underlying excitation conditions. The critical magnetic field criterion implies that the cold cloudlets at two positions are partially controlled by processes that create and dissipate internal motions. Supersonic but sub-Alfvénic velocities in the cold component at most selected positions indicates that internal motions are likely MHD waves. Magnetic pressure dominates thermal pressure in both gas components at all selected positions, assuming random orientation of the magnetic field. The magnetic pressure of a constant magnetic field throughout all the gas phases can support the total internal pressure of the cold components, but it cannot support the internal pressure of the warm components. If the magnetic field scales as , then the evolution of the cold cloudlets at two selected positions, and the warm cloudlets at all selected positions, will be determined by ambipolar diffusion.
26 pages, 13 figures, A&A accepted
References in corpus (25)
- Molecular line emission in NGC1068 imaged with ALMA. I An AGN-driven outflow in the dense molecular gas
- Diagnostics of irradiated dense gas in galaxy nuclei. II. A grid of XDR and PDR models
- Early Science with SOFIA, the Stratospheric Observatory for Infrared Astronomy
- The relation between gas and dust in the Taurus Molecular Cloud
- GREAT: the SOFIA high-frequency heterodyne instrument
- A multi-transition HCN and HCO+ study of 12 nearby active galaxies: AGN versus SB environments
- Magnetic Fields in Dark Cloud Cores: Arecibo OH Zeeman Observations
- Molecular line emission in NGC1068 imaged with ALMA: II. The chemistry of the dense molecular gas
- The young stellar population in M17 revealed by Chandra
- GREAT/SOFIA atmospheric calibration
- Overluminous HNC Line Emission in Arp220, NGC4418 and Mrk231 - Global IR Pumping or XDRs?
- Mechanical feedback in the molecular ISM of luminous IR galaxies
- The Excitation of HCN and HCO+ in the Galactic Center Circumnuclear Disk
- Herschel observations of the Sgr B2 cores: Hydrides, warm CO, and cold dust
- A New Probe of Dense Gas at High Redshift: Detection of HCO+(5-4) Line Emission in APM 08279+5255
- Luminous HC3N line emission in NGC4418 - buried AGN or nascent starburst?
- Radiative and mechanical feedback into the molecular gas of NGC 253
- A clumpy-cloud PDR model of the global far-infrared line emission of the Milky Way
- Detection of HNC and tentative detection of CN at z=3.9
- APECS - The Atacama Pathfinder Experiment Control System
- Molecular tracers of high mass star-formation in external galaxies
- Detection of a large fraction of atomic gas not associated with star-forming material in M17 SW
- Tracing the Physical Conditions in Active Galactic Nuclei with Time-Dependent Chemistry
- The interaction of young massive stars with their environment: A millimeter and submillimeter line study of NGC6334 FIR II
- High-resolution molecular line observations of active galaxies
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