The structure of molecular gas associated with NGC2264: wide-field 12CO and H2 imaging
arXiv:1203.3763 · doi:10.1111/j.1365-2966.2012.20941.x
Abstract
We present wide-field, high-resolution imaging observations in 12CO 3-2 and H2 1-0 S(1) towards a ~1 square degree region of NGC2264. We identify 46 H2 emission objects, of which 35 are new discoveries. We characterize several cores as protostellar, reducing the previously observed ratio of prestellar/protostellar cores in the NGC2264 clusters. The length of H2 jets increases the previously reported spatial extent of the clusters. In each cluster, <0.5% of cloud material has been perturbed by outflow activity. A principal component analysis of the 12CO data suggests that turbulence is driven on scales >2.6 pc, which is larger than the extent of the outflows. We obtain an exponent alpha=0.74 for the size-linewidth relation, possibly due to the high surface density of NGC2264. In this very active, mixed-mass star forming region, our observations suggest that protostellar outflow activity is not injecting energy and momentum on a large enough scale to be the dominant source of turbulence.
MNRAS accepted
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- A Statistical Study of Massive Cluster-Forming Clumps
- Phase-space structures and stellar populations in the star-forming region NGC~ 2264
- Large-scale magnetic field in the Monoceros OB-1 East molecular cloud
- Investigation of Chemical Differentiation among the NGC2264 Cluster-Forming Clumps
- Massive Quiescent Cores in Orion: V. The Physical Structures on Sub-Jeans Scale and the Chemical Properties in Two Extremely Dense Cores
- Clump-scale chemistry in the NGC2264-D cluster-forming region