Photoionising feedback in spiral arm molecular clouds
Abstract
We present simulations of a 500 pc region, containing gas of mass 4 10 M, extracted from an entire spiral galaxy simulation, scaled up in resolution, including photoionising feedback from stars of mass > 18 M. Our region is evolved for 10 Myr and shows clustered star formation along the arm generating 5000 cluster sink particles 5% of which contain at least one of the 4000 stars of mass > 18 M. Photoionisation has a noticeable effect on the gas in the region, producing ionised cavities and leading to dense features at the edge of the HII regions. Compared to the no-feedback case, photoionisation produces a larger total mass of clouds and clumps, with around twice as many such objects, which are individually smaller and more broken up. After this we see a rapid decrease in the total mass in clouds and the number of clouds. Unlike studies of isolated clouds, our simulations follow the long range effects of ionisation, with some already-dense gas becoming compressed from multiple sides by neighbouring HII regions. This causes star formation that is both accelerated and partially displaced throughout the spiral arm with up to 30% of our cluster sink particle mass forming at distances > 5 pc from sites of sink formation in the absence of feedback. At later times, the star formation rate decreases to below that of the no-feedback case.
Keywords
Cite
@article{arxiv.2005.06234,
title = {Photoionising feedback in spiral arm molecular clouds},
author = {Thomas J. R. Bending and Clare L. Dobbs and Matthew R. Bate},
journal= {arXiv preprint arXiv:2005.06234},
year = {2020}
}
Comments
22 pages, 20 figures, accepted for publication in MNRAS