Near-Infrared Observations of Outflows and YSOs in the Massive Star-Forming Region AFGL 5180
arXiv:2311.11909 · doi:10.1051/0004-6361/202348094
Abstract
Methods: Broad- and narrow-band imaging of AFGL 5180 was made in the NIR with the LBT, in both seeing-limited ($\sim0.5\arcsec$) and high angular resolution ($\sim0.09\arcsec$) Adaptive Optics (AO) modes, as well as with HST. Archival ALMA continuum data was also utilized. Results: At least 40 jet knots were identified via NIR emission from H and [FeII] tracing shocked gas. Bright jet knots outflowing from the central most massive protostar, S4, are detected towards the east of the source and are resolved in fine detail with the AO imaging. Additional knots are distributed throughout the field, likely indicating the presence of multiple driving sources. Sub-millimeter sources detected by ALMA are shown to be grouped in two main complexes, AFGL 5180 M and a small cluster $\sim15\arcsec$ to the south, AFGL 5180 S. From our NIR continuum images we identify YSO candidates down to masses of . Combined with the sub-mm sources, this yields a surface number density of such YSOs of within a projected radius of about 0.1 pc. Such a value is similar to those predicted by models of both Core Accretion from a turbulent clump environment and Competitive Accretion. The radial profile of is relatively flat on scales out to 0.2~pc, with only modest enhancement around the massive protostar inside 0.05~pc. Conclusions: This study demonstrates the utility of high-resolution NIR imaging, in particular with AO, for detecting outflow activity and YSOs in distant regions. The presented images reveal the complex morphology of outflow-shocked gas within the large-scale bipolar flow of a massive protostar, as well as clear evidence for several other outflow driving sources in the region. Finally, this work presents a novel approach to compare the observed YSO surface number density from our study against different models of massive star formation.
Accepted to Astronomy & Astrophysics (A&A)
References in corpus (26)
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- Gaia Data Release 3: Summary of the content and survey properties
- CASA, the Common Astronomy Software Applications for Radio Astronomy
- A Catalog of Extended Green Objects (EGOs) in the GLIMPSE Survey: A new sample of massive young stellar object outflow candidates
- A Compendium of Distances to Molecular Clouds in the Star Formation Handbook
- The dynamics and outcome of star formation with jets, radiation, winds, and supernovae in concert
- Jets from Young Stars
- A near-IR spectroscopic survey of massive jets towards EGOs
- Effects of the environment and feedback physics on the initial mass function of stars in the STARFORGE simulations
- Radiation Transfer of Models of Massive Star Formation. IV. The Model Grid and Spectral Energy Distribution Fitting
- The Orion Protostellar Explosion and Runaway Stars Revisited: Stellar Masses, Disk Retention, and an Outflow from BN
- Mid-Infrared Source Multiplicity within Hot Molecular Cores traced by Methanol Masers
- The SOFIA Massive (SOMA) Star Formation Survey. II. High Luminosity Protostars
- SiO emission as a probe of Cloud-Cloud Collisions in Infrared Dark Clouds
- Confirming the Explosive Outflow in G5.89 with ALMA
- Molecular outflows: Explosive versus protostellar
- The SOFIA Massive (SOMA) Star Formation Survey. IV. Isolated Protostars
- The SOFIA Massive (SOMA) Star Formation Survey. III. From Intermediate- to High-Mass Protostars
- The sharpest view on the high-mass star-forming region S255IR. Near-InfraRed Adaptive Optics Imaging on the Outbursting Source NIRS3
- The Supernova Remnant Population of NGC6946 as Observed in [Fe II] 1.644 m with HST
- Supersonic Expansion of the Bipolar Hii Region Sh2-106: A 3,500 Year-Old Explosion?
- Star Cluster Formation from Turbulent Clumps. III. Across the mass spectrum
- AFGL 5180 and AFGL 6366S: sites of hub-filament systems at the opposite edges of a filamentary cloud
- Isolated Massive Star Formation in G28.20-0.05
- NIR jets from a clustered region of massive star formation: Morphology and composition in the IRAS 18264-1152 region
- Massive Protocluster of a Periodic Maser Source G188.95+0.89