Published May 9, 2020 | Version 1.0
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A Detailed View of the Circumstellar Environment and Disk of the Forming O-star AFGL 4176 - Online Data

  • 1. University of Leeds
  • 2. Max Planck Institute for Astronomy
  • 3. Moscow Institute of Physics and Technology & Ural Federal University
  • 4. Institute of Astronomy and Astrophysics, Eberhard Karls University Teubingen
  • 5. Institute of Astronomy, KU Leuven
  • 6. Aperio Software

Contributors

  • 1. University of Leeds

Description

These data accompany the ApJ paper Johnston et al. (2020), "A Detailed View of the Circumstellar Environment and Disk of the Forming O-star AFGL 4176" 

ArXiv link: https://arxiv.org/abs/2004.13739

Abstract: We present a detailed analysis of the disk and circumstellar environment of the forming O-type star AFGL 4176 mm1, placing results from the Atacama Large Millimeter/submillimeter Array (ALMA) into context with multiwavelength data. With ALMA, we detect seventeen 1.2 mm continuum sources within 5" (21,000 au) of AFGL 4176 mm1. We find that mm1 has a spectral index of 3.4±0.2 across the ALMA band, with >87% of its 1.2 mm continuum emission from dust. The source mm2, projected 4200 au from mm1, may be a companion or a blueshifted knot in a jet. We also explore the morphological differences between the molecular lines detected with ALMA, finding 203 lines from 25 molecules, which we categorize into several morphological types. Our results show that AFGL 4176 mm1 provides an example of a forming O-star with a large and chemically complex disk, which is mainly traced by nitrogen-bearing molecules. Lines that show strong emission on the blueshifted side of the disk are predominantly oxygen-bearing, which we suggest are tracing a disk accretion shock. The molecules C^{34}S, H2CS and CH3CCN trace a slow wide-angle wind or dense structures in the outflow cavity walls. With the Australia Telescope Compact Array (ATCA), we detect a compact continuum source (<2000 x 760 au) at 1.2 cm, associated with mm1, of which >96% is from ionized gas. The ATCA NH3(1,1) and (2,2) emission traces a large-scale (r ~ 0.5 pc) rotating toroid with the disk source mm1 in the blueshifted part of this structure offset to the northwest.

A list and short description of the files in this Zenodo dataset are given in the file README_Johnstonetal2020.txt.

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Additional details

Related works

Is supplement to
Preprint: https://arxiv.org/abs/2004.13739 (URL)

Funding

European Commission
CSF - From Cloud to Star Formation 648505

References

  • Johnston et al. (2020). Dataset associated with arXiv:2004.13739.