English

Cold gas outflows from the Small Magellanic Cloud traced with ASKAP

Astrophysics of Galaxies 2018-11-06 v1

Abstract

Feedback from massive stars plays a critical role in the evolution of the Universe by driving powerful outflows from galaxies that enrich the intergalactic medium and regulate star formation. An important source of outflows may be the most numerous galaxies in the Universe: dwarf galaxies. With small gravitational potential wells, these galaxies easily lose their star-forming material in the presence of intense stellar feedback. Here, we show that the nearby dwarf galaxy, the Small Magellanic Cloud (SMC), has atomic hydrogen outflows extending at least 2 kiloparsecs (kpc) from the star-forming bar of the galaxy. The outflows are cold, T<400 KT<400~{\rm K}, and may have formed during a period of active star formation 256025 - 60 million years (Myr) ago. The total mass of atomic gas in the outflow is 107\sim 10^7 solar masses, M{\rm M_{\odot}}, or 3\sim 3% of the total atomic gas of the galaxy. The inferred mass flux in atomic gas alone, M˙HI0.21.0 M yr1\dot{M}_{HI}\sim 0.2 - 1.0~{\rm M_{\odot}~yr^{-1}}, is up to an order of magnitude greater than the star formation rate. We suggest that most of the observed outflow will be stripped from the SMC through its interaction with its companion, the Large Magellanic Cloud (LMC), and the Milky Way, feeding the Magellanic Stream of hydrogen encircling the Milky Way.

Keywords

Cite

@article{arxiv.1811.01772,
  title  = {Cold gas outflows from the Small Magellanic Cloud traced with ASKAP},
  author = {N. M. McClure-Griffiths and H. Dénes and J. M. Dickey and S. Stanimirović and L. Staveley-Smith and Katherine Jameson and Enrico Di Teodoro and James R. Allison and J. D. Collier and A. P. Chippendale and T. Franzen and Gülay Gürkan and G. Heald and A. Hotan and D. Kleiner and K. Lee-Waddell and D. McConnell and A. Popping and Jonghwan Rhee and C. J. Riseley and M. A. Voronkov and M. Whiting},
  journal= {arXiv preprint arXiv:1811.01772},
  year   = {2018}
}

Comments

Published in Nature Astronomy, 29 October 2018, http://dx.doi.org/10.1038/s41550-018-0608-8

R2 v1 2026-06-23T05:04:31.696Z