Herschel Reveals Massive Cold Clumps in NGC 7538
arXiv:1307.0022 · doi:10.1088/0004-637X/773/2/102
Abstract
We present the first overview of the Herschel observations of the nearby high-mass star-forming region NGC 7538, taken as part of the Herschel imaging study of OB Young Stellar objects (HOBYS) Key Programme. These PACS and SPIRE maps cover an approximate area of one square degree at five submillimeter and far-infrared wavebands. We have identified 780 dense sources and classified 224 of those. With the intention of investigating the existence of cold massive starless or class 0-like clumps that would have the potential to form intermediate- to high-mass stars, we further isolate 13 clumps as the most likely candidates for followup studies. These 13 clumps have masses in excess of 40 M_sun and temperatures below 15 K. They range in size from 0.4 pc to 2.5 pc and have densities between 3x10^3 cm^-3 to 4x10^4 cm^-3. Spectral energy distributions are then used to characterize their energetics and evolutionary state through a luminosity-mass diagram. NGC 7538 has a highly filamentary structure, previously unseen in the dust continuum of existing submillimeter surveys. We report the most complete imaging to date of a large, evacuated ring of material in NGC 7538 which is bordered by many cool sources.
23 pages, 7 figures, 1 table, accepted by ApJ
References in corpus (5)
- The earliest phases of high-mass star formation: a 3 square degree millimeter continuum mapping of Cygnus X
- First 450-micron dust continuum mapping of the massive star-forming region NGC 3576 with the P-ArTeMiS bolometer camera
- Herschel Observations of the W3 GMC: Clues to the Formation of Clusters of High-Mass Stars
- Physical Characteristics of a Dark Cloud in an Early Stage of Star Formation toward NGC 7538: an Outer Galaxy Infrared Dark Cloud?
- Spitzer's mid-infrared view on an outer Galaxy Infrared Dark Cloud candidate toward NGC 7538
Cited by in corpus (25)
- High-Mass Star and Massive Cluster Formation in the Milky Way
- Properties of Hi-GAL clumps in the inner Galaxy]{The Hi-GAL compact source catalogue. I. The physical properties of the clumps in the inner Galaxy ()
- The first Hi-GAL observations of the outer Galaxy: a look to star formation in the third Galactic quadrant in the longitude range 216.5 < l < 225.5
- Low-velocity shocks traced by extended SiO emission along the W43 ridges: witnessing the formation of young massive clusters
- The earliest phases of high-mass star formation, as seen in NGC 6334 by \emph{Herschel}
- Using 3D Voronoi grids in radiative transfer simulations
- Understanding star formation in molecular clouds IV. Column density PDFs from quiescent to massive molecular clouds
- The stellar contents and star formation in the NGC 7538 region
- KFPA Examinations of Young STellar Object Natal Environments (KEYSTONE): Hierarchical Ammonia Structures in Galactic Giant Molecular Clouds
- Far-infrared observations of a massive cluster forming in the Monoceros R2 filament hub
- FEEDBACK from the NGC7538 HII region
- HII Region Ionization of the Interstellar Medium: A Case Study of NGC 7538
- A Morphological Classification of 18190 Molecular Clouds Identified in CO Data from the MWISP Survey
- Star formation towards the southern Cometary HII region IRAS 17256-3631
- NGC 7538 : Multiwavelength Study of Stellar Cluster Regions associated with IRS 1-3 and IRS 9 sources
- Green Bank Telescope Observations of 3He+: HII Regions
- Over-sized gas clumps in an extremely-metal-poor molecular cloud revealed by ALMA's pc-scale maps
- Intensity-Corrected Herschel Observations of Nearby Isolated Low-Mass Clouds
- NGC7538 IRS1 -- an O star driving an ionized jet and giant N-S outflow
- Star forming activity in the H II regions associated with IRAS 17160-3707 complex
- A Herschel and BIMA study of the sequential star formation near the W48A HII region
- NGC 7538 IRS1: Interaction of a polarized dust spiral and a molecular outflow
- Spatial distribution of NH2D in massive star-forming regions
- Star Formation at the Periphery of a Molecular Superbubble: The Case of G12.79+0.43
- Magnetic field of a ring-like shape molecular cloud