The JCMT Gould Belt Survey : a first look at IC 5146

D. Johnstone, S. Ciccone, H. Kirk, S. Mairs, J. Buckle, D. S. Berry, H. Broekhoven-Fiene, M. J. Currie, J. Hatchell, T. Jenness, J. C. Mottram, K. Pattle, S. Tisi, J. D. Francesco, M. R. Hogerheijde, D. Ward-Thompson, P. Bastien, D. Bresnahan, H. Butner, M. ChenA. Chrysostomou, S. Coude, C. J. Davis, E. Drabek-Maunder, A. Duarte-Cabral, M. Fich, J. Fiege, P. Friberg, R. Friesen, G.\ Fuller, Sarah F. A., S. Graves, J. Greaves, J. Gregson, W. Holland, G. Joncas, J. M. Kirk, L. B. G. Knee, K. Marsh, Gerald Matthews B.\, C. C., G. Moriarty-Schieven, C. Mowat, D. Nutter, J. E. Pineda, C. Salji, J. Rawlings, J. Richer, D. Robertson, E. Rosolowsky, D. Rumble, S. Sadavoy, H. Thomas, N. Tothill, S. Viti, G. J. White, J. Wouterloot

Research output: Contribution to journalArticlepeer-review

20 Citations (Scopus)

Abstract

We present 450 and 850 μm submillimeter continuum observations of the IC 5146 star-forming region taken as part of the James Clerk Maxwell Telescope Gould Belt Survey. We investigate the location of bright submillimeter (clumped) emission with the larger-scale molecular cloud through comparison with extinction maps, and find that these denser structures correlate with higher cloud column density. Ninety-six individual submillimeter clumps are identified using FellWalker, and their physical properties are examined. These clumps are found to be relatively massive, ranging from 0.5 M⊙ to 116 M⊙ with a mean mass of 8 M⊙ and a median mass of 3.7 M⊙ . A stability analysis for the clumps suggests that the majority are (thermally) Jeans stable, with M/Mj < 1. We further compare the locations of known protostars with the observed submillimeter emission, finding that younger protostars, i.e., Class 0 and I sources, are strongly correlated with submillimeter peaks and that the clumps with protostars are among the most Jeans unstable. Finally, we contrast the evolutionary conditions in the two major star-forming regions within IC 5146: the young cluster associated with the Cocoon Nebula and the more distributed star formation associated with the Northern Streamer filaments. The Cocoon Nebula appears to have converted a higher fraction of its mass into dense clumps and protostars, the clumps are more likely to be Jeans unstable, and a larger fraction of these remaining clumps contain embedded protostars. The Northern Streamer, however, has a larger number of clumps in total and a larger fraction of the known protostars are still embedded within these clumps.
Original languageEnglish
Article number132
Number of pages21
JournalAstrophysical Journal
Volume836
Issue number1
DOIs
Publication statusPublished - 2017

Keywords

  • evolution
  • galaxies
  • interstellar matter
  • protostars
  • stars
  • submillimeter astronomy

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