Tracers of Dense Gas in the Outer Galaxy
arXiv:2207.11613 · doi:10.3847/1538-3881/ac83af
Abstract
We have mapped HCN and HCO (J = 1 0) line emission toward a sample of seven star-forming regions (with 12 + log[O/H] range from 8.34 to 8.69) in the outer Milky Way (Galactocentric distance > 9.5 kpc), using the 14-meter radio telescope of the Taeduk Radio Astronomy Observatory (TRAO). We compare these two molecular lines with other conventional tracers of dense gas, millimeter-wave continuum emission from dust and extinction thresholds ( mag), inferred from the CO line data. HCN and HCO correlate better with the millimeter emission than with the extinction criterion. A significant amount of luminosity comes from regions below the extinction criterion and outside the millimeter clump for all the clouds. The average fraction of HCN luminosity from within the regions with mag is ; for the regions of millimeter emission, it is . Based on a comparison with column density maps from Herschel, HCN and HCO trace dense gas in high column density regions better than does CO. HCO is less concentrated than HCN for outer Galaxy targets, in contrast with the inner Galaxy sample, suggesting that metallicity may affect the interpretation of tracers of dense gas. The conversion factor between the dense gas mass () and line luminosities of HCN and HCO, when integrated over the whole cloud, is comparable with factors used in extragalactic studies.
20 pages, 8 figures, 5 tables, accepted for publication in The Astronomical Journal
References in corpus (21)
- The NumPy array: a structure for efficient numerical computation
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- The Critical Density and the Effective Excitation Density of Commonly Observed Molecular Dense Gas Tracers
- The relation between gas and dust in the Taurus Molecular Cloud
- The anatomy of the Orion B Giant Molecular Cloud: A local template for studies of nearby galaxies
- Multi-temperature mapping of dust structures throughout the Galactic Plane using the PPMAP tool with Herschel Hi-GAL data
- Molecular Line Emission as a Tool for Galaxy Observations (LEGO). I. HCN as a tracer of moderate gas densities in molecular clouds and galaxies
- Triggered massive-star formation on the borders of Galactic HII regions. IV- Star formation at the periphery of Sh2-212
- Star Formation Relations in the Milky Way
- The radial abundance gradient of oxygen towards the Galactic anticentre
- Gradients of chemical abundances in the Milky Way from HII regions: distances derived from Gaia EDR3 parallaxes and temperature inhomogeneities
- 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
- A multiwavelength study of embedded clusters in W5-east, NGC7538, S235, S252 and S254-S258
- Star Formation Occurs in Dense Gas, but What Does "Dense" Mean?
- First detection of 13CH in the interstellar medium
- Spectral Line Survey toward a Molecular Cloud in IC10
- Observational signatures of cloud-cloud collision in the extended star-forming region S235
- Dense gas in low-metallicity galaxies
- Optical and Near-infrared survey of the stellar contents associated with the star-forming Complex Sh2-252
- The link between gas and stars in the S254-S258 star-forming region
Cited by in corpus (5)
- Characterizing the line emission from molecular clouds. II. A comparative study of California, Perseus, and Orion A
- A Complete HCN Survey of the Perseus Molecular Cloud
- HCN emission from translucent gas and UV-illuminated cloud edges revealed by wide-field IRAM 30m maps of Orion B GMC: Revisiting its role as tracer of the dense gas reservoir for star formation
- A constant NH(1-0)-to-HCN(1-0) ratio on kiloparsec scales
- Research on the Interstellar Medium and Star Formation in the Galaxy: An Indian Perspective