English

Magnetized filamentary gas flows feeding the young embedded cluster in Serpens South

Astrophysics of Galaxies 2020-09-30 v1

Abstract

Observations indicate that molecular clouds are strongly magnetized, and that magnetic fields influence the formation of stars. A key observation supporting the conclusion that molecular clouds are significantly magnetized is that the orientation of their internal structure is closely related to that of the magnetic field. At low column densities the structure aligns parallel with the field, whereas at higher column densities, the gas structure is typically oriented perpendicular to magnetic fields, with a transition at visual extinctions AV3 magA_V\gtrsim{}3~\rm{}mag. Here we use far-infrared polarimetric observations from the HAWC+ polarimeter on SOFIA to report the discovery of a further transition in relative orientation, i.e., a return to parallel alignment at AV21 magA_V\gtrsim{}21~\rm{}mag in parts of the Serpens South cloud. This transition appears to be caused by gas flow and indicates that magnetic supercriticality sets in near AV21 magA_V\gtrsim{}21~\rm{}mag, allowing gravitational collapse and star cluster formation to occur even in the presence of relatively strong magnetic fields.

Keywords

Cite

@article{arxiv.2009.14100,
  title  = {Magnetized filamentary gas flows feeding the young embedded cluster in Serpens South},
  author = {Thushara G. S. Pillai and Dan P. Clemens and Stefan Reissl and Philip C. Myers and Jens Kauffmann and Enrique Lopez-Rodriguez and Felipe O. Alves and Gabriel P. Franco and Jonathan D. Henshaw and Karl M. Menten and Fumitaka Nakamura and Daniel Seifried and Koji Sugitani and Helmut Wiesemeyer},
  journal= {arXiv preprint arXiv:2009.14100},
  year   = {2020}
}

Comments

16 pages, 4 figures, Published in Nature Astronomy (August 2020). This is the authors' version before final edits. Link to the NA publication: https://www.nature.com/articles/s41550-020-1172-6