English

Multi-directional mass-accretion and collimated outflows in W51

Astrophysics of Galaxies 2020-12-23 v2 Solar and Stellar Astrophysics

Abstract

We observed the W51 high-mass star-forming complex with ALMA's longest-baseline configurations, achieving an angular resolution of \sim20 milliarcseconds, corresponding to a linear resolution of \sim100 au at DW51=5.4D_{\mathrm{W51}}=5.4 kpc. The observed region contains three high-mass protostars in which the dust continuum emission at 1.3 mm is optically-thick up to a radius \lesssim1000 au and has brightness temperatures \gtrsim200 K. The high luminosity (104\gtrsim10^4 L_{\odot}) in the absence of free-free emission suggests the presence of massive stars (M20M\gtrsim20 M_{\odot}) at the earliest stages of their formation. Our continuum images reveal remarkably complex and filamentary structures arising from compact cores. Molecular emission shows no clear signs of rotation nor infall on scales from 150 to 2000 au: we do not detect disks. The central sources drive young (\sim100 years), fast (100\sim 100 km s1^{-1}), powerful (M˙>104\dot{M}>10^{-4} M yr1_{\odot} \ yr^{-1}), collimated outflows. These outflows provide indirect evidence of accretion disks on scales rr\lesssim100--500 au (depending on the object). The active outflows are connected to fossil flows that have different orientations on larger spatial scales, implying that the orientations of these small disks change over time. These results together support a variant of an accretion model for high-mass star formation in which massive protostars do not form a large, stable Keplerian disk during their early stages, but instead they accrete material from multiple massive flows with different angular momentum vectors. This scenario therefore contrasts with the simplified classic paradigm of a stable disk+jet system, which is the standard model for low-mass star formation, and provides an experimental confirmation of a multi-directional and unsteady accretion model for massive star formation.

Keywords

Cite

@article{arxiv.1805.05364,
  title  = {Multi-directional mass-accretion and collimated outflows in W51},
  author = {Ciriaco Goddi and Adam Ginsburg and Luke Maud and Qizhou Zhang and Luis Zapata},
  journal= {arXiv preprint arXiv:1805.05364},
  year   = {2020}
}

Comments

27 pages, 9 figures, accepted for publication by ApJ

R2 v1 2026-06-23T01:54:37.104Z