The SQUALO project (Star formation in QUiescent And Luminous Objects) I: clump-fed accretion mechanism in high-mass star-forming objects
arXiv:2301.09917 · doi:10.1093/mnras/stad272
Abstract
The formation mechanism of the most massive stars is far from completely understood. It is still unclear if the formation is core-fed or clump-fed, i.e. if the process is an extension of what happens in low-mass stars, or if the process is more dynamical such as a continuous, multi-scale accretion from the gas at parsec (or even larger) scales. In this context we introduce the SQUALO project, an ALMA 1.3 mm and 3 mm survey designed to investigate the properties of 13 massive clumps selected at various evolutionary stages, with the common feature that they all show evidence for accretion at the clump scale. In this work we present the results obtained from the 1.3 mm continuum data. Our observations identify 55 objects with masses in the range 0.4 <~ M <~ 309 M_sun, with evidence that the youngest clumps already present some degree of fragmentation. The data show that physical properties such as mass and surface density of the fragments and their parent clumps are tightly correlated. The minimum distance between fragments decreases with evolution, suggesting a dynamical scenario in which massive clumps first fragment under the influence of non-thermal motions driven by the competition between turbulence and gravity. With time gravitational collapse takes over and the fragments organize themselves into more thermally supported objects while continuing to accrete from their parent clump. Finally, one source does not fragment, suggesting that the support of other mechanisms (such as magnetic fields) is crucial only in specific star-forming regions.
25 pages, 15 Figures, 9 Tables. Accepted for publication in MNRAS
References in corpus (20)
- Structural Analysis of Molecular Clouds: Dendrograms
- Star formation through gravitational collapse and competitive accretion
- ATLASGAL --- properties of a complete sample of Galactic clumps
- Properties of Hi-GAL clumps in the inner Galaxy]{The Hi-GAL compact source catalogue. I. The physical properties of the clumps in the inner Galaxy ()
- Fragmentation of Molecular Clumps and Formation of Protocluster
- The dynamical properties of dense filaments in the infrared dark cloud G035.39-00.33
- Properties of the dense core population in Orion B as seen by the Herschel Gould Belt survey
- ALMA-IMF I -- Investigating the origin of stellar masses: Introduction to the Large Program and first results
- High-mass Star Formation through Filamentary Collapse and Clump-fed Accretion in G22
- A Hard X-ray Test of HCN Enhancements as a Tracer of Embedded Black Hole Growth
- Infall Motions in Massive Star-Forming Regions: Results from Years 1 & 2 of the MALT90 Survey
- Massive 70 micron quiet clumps II: non-thermal motions driven by gravity in massive star formation?
- The Onset of Massive Star Formation: The Evolution of Temperature and Density Structure in an Infrared Dark Cloud
- An ALMA study of hub-filament systems I. On the clump mass concentration within the most massive cores
- Massive 70 micron quiet clumps I: evidence of embedded low/intermediate-mass star formation activity
- Magnetically-regulated fragmentation of a massive, dense and turbulent clump
- HII regions and high-mass starless clump candidates II. Fragmentation and induced star formation at ~0.025 pc scale: An ALMA continuum study
- The accretion history of high-mass stars: An ArTéMiS pilot study of Infrared Dark Clouds
- Hyper: Hybrid Photometry and Extraction Routine
- ALMA observations of two massive and dense MALT90 clumps