Interpreting the star formation efficiency of nearby molecular clouds with ionizing radiation

We investigate the origin of observed local star formation relations using radiative magnetohydrodynamic simulations with self-consistent star formation and ionizing radiation. We compare these clouds to the density distributions of local star-forming clouds and find that the most diffuse simulated...

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Bibliographic Details
Main Authors: Geen, Samuel Thomas (Author) , Soler, Juan D. (Author) , Hennebelle, Patrick (Author)
Format: Article (Journal)
Language:English
Published: 13 July 2017
In: Monthly notices of the Royal Astronomical Society
Year: 2017, Volume: 471, Issue: 4, Pages: 4844-4855
ISSN:1365-2966
DOI:10.1093/mnras/stx1765
Online Access:Verlag, kostenfrei, Volltext: http://dx.doi.org/10.1093/mnras/stx1765
Verlag, kostenfrei, Volltext: https://academic.oup.com/mnras/article/471/4/4844/3964554
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Author Notes:Sam Geen, Juan D. Soler and Patrick Hennebelle
Description
Summary:We investigate the origin of observed local star formation relations using radiative magnetohydrodynamic simulations with self-consistent star formation and ionizing radiation. We compare these clouds to the density distributions of local star-forming clouds and find that the most diffuse simulated clouds match the observed clouds relatively well. We then compute both observationally motivated and theoretically motivated star formation efficiencies (SFEs) for these simulated clouds. By including ionizing radiation, we can reproduce the observed SFEs in the clouds most similar to nearby Milky Way clouds. For denser clouds, the SFE can approach unity. These observed SFEs are typically 3 to 10 times larger than the ‘total’ SFEs, i.e. the fraction of the initial cloud mass converted into stars. Converting observed into total SFEs is non-trivial. We suggest some techniques for doing so, though estimate up to a factor of 10 error in the conversion.
Item Description:Gesehen am 25.04.2018
Physical Description:Online Resource
ISSN:1365-2966
DOI:10.1093/mnras/stx1765