Spiral Structure and Massive Star formation in the Hub-Filament-System G326.27-0.49
arXiv:2301.09775 · doi:10.1093/mnras/stad215
Abstract
Hub-filament systems (HFSs) are potential sites of formation of star clusters and high mass stars. To understand the HFSs and to provide observational constraints on current theories that attempt to explainstar formation globally, we report a study of the region associated with G326.27-0.49 using infrared data of dust continuum and newly obtained observations on molecular tracers using the APEX telescope. We use the spectroscopic observations to identify velocity-coherent structures (filaments and clumps) and study their properties at a resolution of 0.4 pc. The region contains two main velocity components: first component shows four filaments between -63 and -55 km/s forming a spiral structure converging in a hub, the second filamentary component at -72 km/s harbors a massive young stellar object and possibly interacts with the hub. The clumps harbouring the three main YSOs in the region are massive (187-535 Msun), have luminosities consistent with B-type stars, have central densities of ~10^6 cm^-3 and drive large outflows. Majority of the velocity-coherent clumps in the region show virial parameters between 2-7, which considering the detection of protostars implies collapse to be gradual. We conclude that the region consists of a network of filaments through which mass accretes (~10^-4 Msun/yr) onto the hub. The hub and some of the ends of filaments appear to be undergoing collapse to form new stars. This study identifies a target region for future high resolution observations that could probe the link between the core and filament evolution.
Accepted for publication in MNRAS
References in corpus (15)
- Structural Analysis of Molecular Clouds: Dendrograms
- Filamentary structure of star-forming complexes
- A Catalog of Extended Green Objects (EGOs) in the GLIMPSE Survey: A new sample of massive young stellar object outflow candidates
- 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 ()
- A 24 Micron Point Source Catalog of the Galactic Plane from Spitzer/MIPSGAL
- Filamentary Accretion Flows in the Infrared Dark Cloud G14.225-0.506 Revealed by ALMA
- The SEDIGISM survey: first data release and overview of the Galactic structure
- The SEDIGISM survey: Molecular clouds in the inner Galaxy
- Cloud Structure of Galactic OB Cluster Forming Regions from Combining Ground and Space Based Bolometric Observations
- The Physical and chemical structure of Sagittarius B2 -- IV. Converging filaments in the high-mass cluster forming region Sgr B2(N)
- The Role of Turbulence and Magnetic Fields in Simulated Filamentary Structure
- Formation of the Hub-Filament System G33.92+0.11: Local Interplay between Gravity, Velocity, and Magnetic Field
- Determining the presence of characteristic fragmentation length-scales in filaments
- Kinematics and star formation toward W33: a central hub as a hub--filament system
- Revealing a spiral-shaped molecular cloud in our galaxy - Cloud fragmentation under rotation and gravity