The Large-scale J=3-2 and J=2-1 CO Emission from M17 and its Implications for Extragalactic CO Observations
arXiv:astro-ph/9901134 · doi:10.1086/307180
Abstract
We observed a 10x20 pc region of the molecular cloud M17 in the 12CO and 13CO J=3-2 and J=2-1 transitions to determine their global behavior and to assess the reliability of using ratios of CO line intensities integrated over an entire cloud to determine the physical conditions within the cloud. Both the 12CO/13CO J=2-1 and J=3-2 line ratios correlate with the 13CO integrated intensity, with smaller line ratios observed at locations with large integrated intensities. This correlation is likely due to variations in the column density from one position to another within M17. The 12CO and 13CO (J=3-2/J=2-1) line ratios show no significant variation from place to place within M17, even on the peak of the photon-dominated region. A Large Velocity Gradient analysis of globally averaged line ratios gives results in reasonable agreement with the results obtained for individual lines-of-sight through the cloud, which suggests that the typical physical conditions in a molecular cloud can be determined using CO line ratios integrated over the entire cloud. There appears to be a clear trend of increasing 12CO/13CO J=2-1 and J=3-2 line ratios as one moves from Galactic molecular cloud cores to entire Galactic molecular clouds to normal galaxies. The most likely explanation of the high line ratios for normal galaxies is a significant contribution to the CO emission by low column density material, such as diffuse molecular clouds or the outer envelopes of giant molecular clouds.
26 pages, 6 figures, 2 tables. Accepted for publication in ApJ
References in corpus (3)
Cited by in corpus (22)
- Star Formation from Galaxies to Globules
- The CI lines as tracers of molecular gas, and their prospects at high redshifts
- A Magnetically-Supported Photodissociation Region in M17
- The Extended Environment of M17: A Star Formation History
- The JCMT Nearby Galaxies Legacy Survey I. Star Forming Molecular Gas in Virgo Cluster Spiral Galaxies
- The molecular gas reservoir of 6 low-metallicity galaxies from the Herschel Dwarf Galaxy Survey: A ground-based follow-up survey of CO(1-0), CO(2-1), and CO(3-2)
- Warm Molecular Gas in Dwarf Starburst Galaxies: CO(3-2) Observations
- Opacity broadening and interpretation of suprathermal CO linewidths: Macroscopic Turbulence and Tangled Molecular Clouds
- High Mass Star Formation. II. The Mass Function of Submillimeter Clumps in M17
- Massive molecular outflows associated with UCHII/HII regions
- FOREST Unbiased Galactic plane Imaging survey with the Nobeyama 45-m telescope (FUGIN) 2: Possible evidence for formation of NGC~6618 cluster in M17 by cloud-cloud collision
- The JCMT Nearby Galaxies Legacy Survey II: Warm Molecular Gas and Star Formation in Three Field Spiral Galaxies
- A CO Detection in a Brightest Cluster Galaxy
- The SEDIGISM survey: a search for molecular outflows
- The Distribution of Water Emission in M17SW
- Submillimeter dust emission of the M17 complex measured with PRONAOS
- Characterizing the structure of diffuse emission in Hi-GAL maps
- Extended [C I] and ^{13}CO(5-4) Emission in M17SW
- CHAMP+ observations of warm gas in M17 SW
- A low-luminosity type-1 QSO sample: IV. Molecular gas contents and conditions of star formation in three nearby Seyfert galaxies
- Spatial distributions and kinematics of shocked and ionized gas in M17
- The Spatial Distribution of Atomic Carbon Emission in the Giant Molecular Cloud NGC 604-2