4.7 Article

THE GLOBAL EVOLUTION OF GIANT MOLECULAR CLOUDS. II. THE ROLE OF ACCRETION

期刊

ASTROPHYSICAL JOURNAL
卷 738, 期 1, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/738/1/101

关键词

evolution; ISM: clouds; stars: formation; turbulence

资金

  1. National Science Foundation [AST-0807739, CAREER-0955300, AST-0908553]
  2. Alfred P. Sloan Fellowship
  3. NASA [NNX09AK31G]
  4. Spitzer Space Telescope Theoretical Research Program
  5. NSERC
  6. Ontario Early Researcher Award

向作者/读者索取更多资源

We present virial models for the global evolution of giant molecular clouds (GMCs). Focusing on the presence of an accretion flow and accounting for the amount of mass, momentum, and energy supplied by accretion and star formation feedback, we are able to follow the growth, evolution, and dispersal of individual GMCs. Our model clouds reproduce the scaling relations observed in both galactic and extragalactic clouds. We find that accretion and star formation contribute roughly equal amounts of turbulent kinetic energy over the lifetime of the cloud. Clouds attain virial equilibrium and grow in such a way as to maintain roughly constant surface densities, with typical surface densities of order 50-200 M-circle dot pc(-2), in good agreement with observations of GMCs in the Milky Way and nearby external galaxies. We find that as clouds grow, their velocity dispersion and radius must also increase, implying that the linewidth-size relation constitutes an age sequence. Lastly, we compare our models to observations of GMCs and associated young star clusters in the Large Magellanic Cloud and find good agreement between our model clouds and the observed relationship between H II regions, young star clusters, and GMCs.

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