English

Ionised gas kinematics in bipolar H II regions

Solar and Stellar Astrophysics 2018-05-03 v1

Abstract

Stellar feedback plays a fundamental role in shaping the evolution of galaxies. Here we explore the use of ionised gas kinematics in young, bipolar H II regions as a probe of early feedback in these star-forming environments. We have undertaken a multiwavelength study of a young, bipolar H II region in the Galactic disc, G316.810.06316.81-0.06, which lies at the centre of a massive (103\sim10^3 M_{\odot}) infrared-dark cloud filament. It is still accreting molecular gas as well as driving a 0.2\sim 0.2 pc ionised gas outflow perpendicular to the filament. Intriguingly, we observe a large velocity gradient (47.81±3.2147.81 \pm 3.21 km s1^{-1} pc1^{-1}) across the ionised gas in a direction perpendicular to the outflow. This kinematic signature of the ionised gas shows a reasonable correspondence with the simulations of young H II regions. Based on a qualitative comparison between our observations and these simulations, we put forward a possible explanation for the velocity gradients observed in G316.810.06316.81-0.06. If the velocity gradient perpendicular to the outflow is caused by rotation of the ionised gas, then we infer that this rotation is a direct result of the initial net angular momentum in the natal molecular cloud. If this explanation is correct, this kinematic signature should be common in other young (bipolar) H II regions. We suggest that further quantitative analysis of the ionised gas kinematics of young H II regions, combined with additional simulations, should improve our understanding of feedback at these early stages.

Keywords

Cite

@article{arxiv.1805.00479,
  title  = {Ionised gas kinematics in bipolar H II regions},
  author = {Hannah S. Dalgleish and Steven N. Longmore and Thomas Peters and Jonathan D. Henshaw and Joshua L. Veitch-Michaelis and James S. Urquhart},
  journal= {arXiv preprint arXiv:1805.00479},
  year   = {2018}
}

Comments

14 pages and 9 figures. Accepted for publication in MNRAS