Sequential Star Formation in the Young SMC Region NGC 602: Insights from ALMA
arXiv:2208.13768 · doi:10.3847/1538-4357/ac8d93
Abstract
NGC 602 is a young, low-metallicity star cluster in the "Wing" of the Small Magellanic Cloud. We reveal the recent evolutionary past of the cluster through analysis of high-resolution (0.4 pc) Atacama Large Millimeter/submillimeter Array observations of molecular gas in the associated region N90. We identify 110 molecular clumps ( 0.8 pc) traced by CO emission, and study the relationship between the clumps and associated young stellar objects (YSOs) and pre-main-sequence (PMS) stars. The clumps have high virial parameters (typical 4-11) and may retain signatures of a collision in the last 8 Myr between components of the adjacent supergiant shell SMC-SGS 1. We obtain a CO-bright-to-H gas conversion factor of cm (K km s), and correct observed clump properties for CO-dark H gas to derive a total molecular gas mass in N90 of . We derive a recent ( Myr) star formation rate of Myr with an efficiency of 8 3\% assessed through comparing total YSO mass to total molecular gas mass. Very few significant radial trends exist between clump properties or PMS star ages and distance from NGC 602. We do not find evidence for a triggered star formation scenario among the youngest (2 Myr) stellar generations, and instead conclude that a sequential star formation process in which NGC 602 did not directly cause recent star formation in the region is likely.
31 pages, 13 figures, accepted for publication in ApJ
References in corpus (31)
- Array Programming with NumPy
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- The COMPLETE Survey of Star-Forming Regions: Phase I Data
- The Behavior of the Aromatic Features in M101 HII Regions: Evidence for Dust Processing
- The Nature of the Dense Core Population in the Pipe Nebula: Thermal Cores Under Pressure
- The Spitzer Survey of the Small Magellanic Cloud: FIR Emission and Cold Gas in the SMC
- 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
- Observational Evidence of Dynamic Star Formation Rate in Milky Way Giant Molecular Clouds
- The VMC Survey - XIV. First results on the look-back time star-formation rate tomography of the Small Magellanic Cloud
- Testing massive star evolution, star-formation history and feedback at low metallicity : Spectroscopic analysis of OB stars in the SMC Wing
- A modular set of synthetic spectral energy distributions for young stellar objects
- Physical Properties of Molecular Clouds at 2 parsec Resolution in the Low-Metallicity Dwarf Galaxy NGC 6822 and the Milky Way
- Time Varying Dynamical Star Formation Rate
- The Interstellar Medium and star formation on kpc size scales
- Metallicity and Physical Conditions in the Magellanic Bridge
- The Dust-to-Gas Ratio in the Small Magellanic Cloud Tail
- The CO-dark molecular gas mass in 30 Doradus
- ALMA Observations of a Quiescent Molecular Cloud in the Large Magellanic Cloud
- The Relationship between CO Emission and Visual Extinction Traced by Dust Emission in the Magellanic Clouds
- The Molecular Clouds Fueling a 1/5 Solar Metallicity Starburst
- Disentangling the ISM phases of the dwarf galaxy NGC 4214 using [CII] SOFIA/GREAT observations
- The evolution of temperature and density structures of OB cluster-forming molecular clumps
- ALMA observations of N83C in the early stage of star formation in the Small Magellanic Cloud
- Structural and Dynamical Analysis of 0.1pc Cores and Filaments in the 30~Doradus-10 Giant Molecular Cloud
- The location, clustering, and propagation of massive star formation in giant molecular clouds
- Virial Clumps in Central Molecular Zone Clouds
- Resolved star formation in the metal poor star-forming region Magellanic Bridge C
- SALT observations of the supernova remnant MCSNR J0127-7332 and its associated Be X-ray binary SXP 1062 in the SMC
- ALMA resolves molecular clouds in the metal poor Magellanic Bridge A
- Testing massive star evolution, star-formation history, and feedback at low metallicity: Photometric analysis of OB stars in the SMC Wing
- Modelling Mechanical Heating in Star-Forming Galaxies: CO and 13CO Line Ratios as Sensitive Probes