Molecular Clouds at the Edge of the Galaxy I. Variation of CO J=2-1/1-0 Line Ratio
arXiv:2504.13732 · doi:10.1051/0004-6361/202453007
Abstract
The Galactic edge at Galactocentric distances of 14\,--\,22\,kpc provides an ideal laboratory to study molecular clouds in an environment that is different from the solar neighborhood, due to its lower gas density, lower metallicity, and little or no perturbation from the spiral arms. Observations of CO\,(\,=\,2--1) spectral lines were carried out towards 72 molecular clouds located at the Galactic edge using the IRAM\,30\,m telescope. Combined with CO\,(\,=\,1--0) data from the MWISP project, we investigate the variations of across these Galactic edge clouds, with representing CO(2-1)/CO(1-0) integrated intensity ratios. These are found to range from 0.3 to 3.0 with a mean of 1.0\,\,0.1 in the Galactic edge clouds. The proportions of very low ratio gas (VLRG; \,<\,0.4), low ratio gas (LRG; 0.4\,\,\,<\,0.7), high ratio gas (HRG; 0.7\,\,\,<\,1.0), and very high ratio gas (VHRG; \,\,1.0) are 6.9\%, 29.2\%, 26.4\%, and 37.5\%, respectively, indicating a significant presence of high ratio molecular gas within these regions. In our Galaxy, the ratio exhibits a gradient of initial radial decline followed by a high dispersion with increasing Galacticentric distance and a prevalence for high ratio gas. There is no apparent systematic variation within the Galactocentric distance range of 14 to 22\,kpc. A substantial proportion of HRG and VHRG is found to be associated with compact clouds and regions displaying star-forming activity, suggesting that the high ratios may stem from dense gas concentrations and recent episodes of star formation.
References in corpus (47)
- The Milky Way Imaging Scroll Painting (MWISP): Project Details and Initial Results from the Galactic Longitude of 25.8deg to 49.7deg
- Revealing the physical properties of molecular gas in Orion with a large scale survey in J=2-1 lines of 12CO, 13CO and C18O
- New Constraints on the CO(2-1)/(1-0) Line Ratio Across Nearby Disc Galaxies
- ATLASGAL-selected massive clumps in the inner Galaxy: I. CO depletion and isotopic ratios
- Low-J CO Line Ratios From Single Dish CO Mapping Surveys and PHANGS-ALMA
- A radial age gradient in the geometrically thick disk of the Milky Way
- A Possible Extension of the Scutum-Centaurus Arm into the Outer Second Quadrant
- Galactocentric variation of the gas-to-dust ratio and its relation with metallicity
- Cold gas in the Perseus cluster core: Excitation of molecular gas in filaments
- Metallicity Structure in the Milky Way Disk Revealed by Galactic HII Regions
- CO Multi-line Imaging of Nearby Galaxies (COMING). IX. CO(=2-1)/CO(=1-0) line ratio on kiloparsec scales
- Using CO line ratios to trace the physical properties of molecular clouds
- Central molecular zones in galaxies: 12CO-to-13CO ratios, carbon budget, and X factors
- Chemical Properties of Star Forming Dwarf Galaxies
- Unusual integrated metallicity profile of our Milky Way
- Star Formation in the Most Distant Molecular Cloud in the Extreme Outer Galaxy: A Laboratory of Star Formation in an Early Epoch of the Galaxy's Formation
- Dust-to-gas ratio, factor and CO-dark gas in the Galactic anticentre: an observational study
- Kinetic temperature of massive star forming molecular clumps measured with formaldehyde
- Star Formation in the Extreme Outer Galaxy: Digel Cloud 2 Clusters
- Kinetic temperature of massive star-forming molecular clumps measured with formaldehyde. III. The Orion Molecular Cloud 1
- Systematic Variations of CO J=2-1/1-0 Ratio in The Barred Spiral Galaxy M83
- Statistical Study of the Star Formation Efficiency in Bars: Is Star Formation Suppressed in Gas-Rich Bars?
- Kinetic temperature of massive star forming molecular clumps measured with formaldehyde. II. The Large Magellanic Cloud
- A star cluster at the edge of the Galaxy
- Molecular gas in NUclei of GAlaxies (NUGA): VIII The Seyfert 2 NGC6574
- Deep Near-Infrared Imaging af an Embedded Cluster in the Extreme Outer Galaxy: Census of Supernovae Triggered Star Formation
- Molecular Clouds in the Second Quadrant of the Milky Way Mid-plane from l10475 to l=11975 and b=525 to b=525
- Discovery of Star Formation in the Extreme Outer Galaxy Possibly Induced by a High-velocity Cloud Impact
- PHANGS-JWST First Results: Stellar Feedback-Driven Excitation and Dissociation of Molecular Gas in the Starburst Ring of NGC 1365?
- Kinetic temperature of massive star-forming molecular clumps measured with formaldehyde IV. The ALMA view of N113 and N159W in the LMC
- Galactic Edge Clouds I: Molecular Line Observations and Chemical Modelling of Edge Cloud 2
- CO Excitation and its Connection to Star Formation at 200 pc in NGC 1365
- CO(2-1)/CO(1-0) line ratio on 100 parsec scale in the nearby barred galaxy NGC1300
- OGHReS: Star formation in the Outer Galaxy (-)
- Dense gas and star formation in the Outer Milky Way
- Using CO line ratios to trace compressed areas in bubble N131
- Star formation activity beyond the outer Arm I: WISE-selected candidate star-forming regions
- The CO-dark molecular gas in the cold HI arc
- The Arizona Molecular ISM Survey with the SMT: Survey Overview and Public Data Release
- Kinetic temperature of massive star-forming molecular clumps measured with formaldehyde V. The massive filament DR21
- The Arizona Molecular ISM Survey with the SMT: Variations in the CO(2-1)/CO(1-0) Line Ratio Across the Galaxy Population
- Sulfur isotope ratios in the Large Magellanic Cloud
- Overview Results of JWST Observations of Star-Forming Clusters in the Extreme Outer Galaxy
- CO-CHANGES I: IRAM 30m CO Observations of Molecular Gas in the Sombrero Galaxy
- Inadequate turbulent support in low-metallicity molecular clouds
- A New Search for Star Forming Regions in the Southern Outer Galaxy
- Star Formation Activity Beyond the Outer Arm II: Distribution and Properties of Star Formation