High-resolution APEX/LAsMA CO and CO (3-2) observation of the G333 giant molecular cloud complex : I. Evidence for gravitational acceleration in hub-filament systems
arXiv:2305.12573 · doi:10.1051/0004-6361/202346500
Abstract
Hub-filament systems are suggested to be the birth cradles of high-mass stars and clusters. We apply the FILFINDER algorithm to the integrated intensity maps of the 13CO (3-2) line to identify filaments in the G333 complex, and extract the velocity and intensity along the filament skeleton from moment maps. Clear velocity and density fluctuations are seen along the filaments, allowing us to fit velocity gradients around the intensity peaks. The velocity gradients fitted to the LAsMA data and ALMA data agree with each other over the scales covered by ALMA observations in the ATOMS survey. Changes of velocity gradient with scale indicate a ''funnel'' structure of the velocity field in PPV space, indicative of a smooth, continuously increasing velocity gradient from large to small scales, and thus consistent with gravitational acceleration. The typical velocity gradient corresponding to a 1 pc scale is ~1.6km/s/pc. Assuming free-fall, we estimate a kinematic mass within 1 pc of ~1190 M, which is consistent with typical masses of clumps in the ATLASGAL survey. We find direct evidence for gravitational acceleration from comparison of the observed accelerations to those predicted by free-fall onto dense hubs. On large scales, we find that the inflow may be driven by the larger scale structure, consistent with hierarchical structure in the molecular cloud and gas inflow from large to small scales. The hub-filament structures at different scales may be organized into a hierarchical system extending up to the largest scales probed, through the coupling of gravitational centers at different scales. We argue that the ''funnel'' structure in PPV space can be an effective probe for the gravitational collapse motions in molecular clouds. The large scale gas inflow is driven by gravity, implying that the molecular clouds in G333 complex may be in the state of global gravitational collapse.
References in corpus (29)
- Theory of Star Formation
- Radiation-Hydrodynamic Simulations of Collapse and Fragmentation in Massive Protostellar Cores
- Physical properties of molecular clouds for the entire Milky Way disk
- ATLASGAL --- properties of a complete sample of Galactic clumps
- Fragmentation of Molecular Clumps and Formation of Protocluster
- The dynamical properties of dense filaments in the infrared dark cloud G035.39-00.33
- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions -- I. Survey description and a first look at G9.62+0.19
- Filamentary Accretion Flows in the Infrared Dark Cloud G14.225-0.506 Revealed by ALMA
- Magnetized filamentary gas flows feeding the young embedded cluster in Serpens South
- High-mass Star Formation through Filamentary Collapse and Clump-fed Accretion in G22
- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions -- XI. From inflow to infall in hub-filament systems
- Autonomous Gaussian Decomposition
- Seeding the Galactic Centre gas stream: gravitational instabilities set the initial conditions for the formation of protocluster clouds
- Ubiquitous velocity fluctuations throughout the molecular interstellar medium
- Molecular line mapping of the giant molecular cloud associated with RCW 106 - III. Multi-molecular line mapping
- Molecular line mapping of the giant molecular cloud associated with RCW 106 - II. Column density and dynamical state of the clumps
- Velocity-coherent Filaments in NGC 1333: Evidence for Accretion Flow?
- Large-scale periodic velocity oscillation in the filamentary cloud G350.54+0.69
- A search for 22-GHz water masers within the giant molecular cloud associated with RCW106
- Density profile evolution during prestellar core collapse: Collapse starts at the large scale
- New insights in the HII region G18.88-0.49: hub-filament system and accreting filaments
- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions-IX. A pilot study towards IRDC G034.43+00.24 on multi-scale structures and gas kinematics
- Kinematics and Structure of Star-forming Regions: Insights from Cold Collapse Models
- Radio and infrared recombination studies of the southern massive star-forming region G333.6-0.2
- High Resolution LAsMA CO and CO Observation of the G305 Giant Molecular Cloud Complex : I. Feedback on the Molecular Gas
- Initial phases of high-mass star formation: A multiwavelength study towards the extended green object G12.42+0.50
- Formation of hub-filament structure triggered by cloud-cloud collision in W33 complex
- Molecular line mapping of the giant molecular cloud associated with RCW 106 - IV. Ammonia towards dust emission
- The G332 molecular cloud ring: I. Morphology and physical characteristics
Cited by in corpus (6)
- ALMA-IMF XIII: NH kinematic analysis on the intermediate protocluster G353.41
- High-resolution APEX/LAsMA CO and CO (3-2) observation of the G333 giant molecular cloud complex : II. Survival and gravitational collapse of dense gas structures under feedback
- Emergence of high-mass stars in complex fiber networks (EMERGE) V. From filaments to spheroids: the origin of the hub-filament systems
- JWST-ALMA Study of a Hub-Filament System in the Nascent Phase
- High resolution observations of 12CO and 13CO(3--2) toward the NGC 6334 extended filament
- Properties of Contracting Massive Protostellar Cores