An Unbiased CO Survey Toward the Northern Region of the Small Magellanic Cloud with the Atacama Compact Array. I. Overview: CO Cloud Distributions
arXiv:2108.09018 · doi:10.3847/1538-4357/ac1ff4
Abstract
We have analyzed the data from a large-scale CO survey toward the northern region of the Small Magellanic Cloud (SMC) obtained with the Atacama Compact Array (ACA) stand-alone mode of ALMA. The primary aim of this study is to comprehensively understand the behavior of CO as an H tracer in a low-metallicity environment (). The total number of mosaic fields is 8000, which results in a field coverage of 0.26degree (2.9 10pc), corresponding to 10 area of the galaxy. The sensitive 2pc resolution observations reveal the detailed structure of the molecular clouds previously detected in the single-dish NANTEN survey. We have detected a number of compact CO clouds within lower H column density (10cm) regions whose angular scale is similar to the ACA beam size. Most of the clouds in this survey also show peak brightness temperature as low as 1K, which for optically thick CO emission implies an emission size much smaller than the beam size, leading to beam dilution. The comparison between an available estimation of the total molecular material traced by thermal dust emission and the present CO survey demonstrates that more than 90 H gas cannot be traced by the low- CO emission. Our processed data cubes and 2-D images are publicly available.
20 pages, 13 figures, 2 tables (including appendix). Accepted for publication in ApJ
References in corpus (29)
- Structural Analysis of Molecular Clouds: Dendrograms
- The VLT-FLAMES Survey of Massive Stars: Observations centered on the Magellanic Cloud clusters NGC 330, NGC 346, NGC 2004, and the N11 region
- A distance determination to the Small Magellanic Cloud with an accuracy of better than 2 percent based on late-type eclipsing binary stars
- CO-dark gas and molecular filaments in Milky Way type galaxies
- Clustering of Local Group distances: publication bias or correlated measurements? I. The Large Magellanic Cloud
- Dust and Gas in the Magellanic Clouds from the HERITAGE Herschel Key Project. I. Dust Properties and Insights into the Origin of the Submm Excess Emission
- Dust and Gas in the Magellanic Clouds from the HERITAGE Herschel Key Project. II. Gas-to-Dust Ratio Variations across ISM Phases
- Revealing the physical properties of molecular gas in Orion with a large scale survey in J=2-1 lines of 12CO, 13CO and C18O
- AUTO-MULTITHRESH: A General Purpose Automasking Algorithm
- Physical Properties of Molecular Clouds at 2 parsec Resolution in the Low-Metallicity Dwarf Galaxy NGC 6822 and the Milky Way
- Optically thick HI dominant in the local interstellar medium; an alternative interpretation to "dark gas"
- Spitzer Infrared Spectrographic point source classification in the Small Magellanic Cloud
- CO Multi-line Imaging of Nearby Galaxies (COMING). IX. CO(=2-1)/CO(=1-0) line ratio on kiloparsec scales
- Star cluster formation and cloud dispersal by radiative feedback: dependence on metallicity and compactness
- Photodissociation Region Diagnostics Across Galactic Environments
- The supernova remnant population of the Small Magellanic Cloud
- Star-formation rates from young-star counts and the structure of the ISM across the NGC346/N66 complex in the SMC
- FRagmentation and Evolution of dense cores Judged by ALMA (FREJA). I (Overview). Inner 1000 au structures of prestellar/protostellar cores in Taurus
- ALMA Observations of a Quiescent Molecular Cloud in the Large Magellanic Cloud
- ALMA observations of N83C in the early stage of star formation in the Small Magellanic Cloud
- ALMA Observations of Giant Molecular Clouds in M33 I: Resolving Star Formation Activities in the Giant Molecular Filaments Possibly Formed by a Spiral Shock
- Highly turbulent gas on GMC-scales in NGC 3256, the nearest luminous infrared galaxy
- ALMA reveals a cloud-cloud collision that triggers star formation in N66N of the Small Magellanic Cloud
- Fermi-LAT gamma-ray study of the interstellar medium and cosmic rays in the Chamaeleon Molecular-Cloud Complex: A look at the dark gas as optically thick HI
- Internal Structures of Molecular Clouds in the LMC Revealed by ALMA
- ALMA Observations of Giant Molecular Clouds in M33. II. Triggered High-mass Star Formation by Multiple Gas Colliding Events at the NGC 604 Complex
- The 1.1 mm Continuum Survey of the Small Magellanic Cloud: Physical Properties and Evolution of the Dust-selected Clouds
- Formation of High-Mass stars in an isolated environment in the Large Magellanic Cloud
- ALMA Observations of Giant Molecular Clouds in M33 III: Spatially Resolved Features of the Star-Formation Inactive Million-solar-mass Cloud
Cited by in corpus (13)
- An ALMA study of the massive molecular clump N159W-North in the Large Magellanic Cloud: A possible gas flow penetrating one of the most massive protocluster systems in the Local Group
- CO(2-1) Survey at 9 parsec resolution in the SMC
- Far and extreme UV radiation feedback in molecular clouds and its influence on the mass and size of star clusters
- An Unbiased CO Survey Toward the Northern Region of the Small Magellanic Cloud with the Atacama Compact Array. II. CO Cloud Catalog
- The First Detection of a Protostellar CO Outflow in the Small Magellanic Cloud with ALMA
- ACA CO() Mapping of the Nearest Spiral Galaxy M33. I. Initial Results and Identification of Molecular Clouds
- Metallicity dependence of the CO-to-H and the [CI]-to-H conversion factors in galaxies
- Gas, dust, and the CO-to-molecular gas conversion factor in low-metallicity starbursts
- ATCA Study of Small Magellanic Cloud Supernova Remnant 1E 0102.2-7219
- ACA CO(J=2-1) Mapping of the Nearest Spiral Galaxy M33. II. Exploring the Evolution of Giant Molecular Clouds
- ALMA 0.1 pc View of Molecular Clouds Associated with High-Mass Protostellar Systems in the Small Magellanic Cloud: Are Low-Metallicity Clouds Filamentary or Not?
- CO Observations of the SMC-N66 Hii Region with ALMA: Properties of Clumps along Filamentary Molecular Clouds and Possible Expansion Motion
- Compact and High Excitation Molecular Clumps in the Extended Ultraviolet Disk of M83