From high-mass starless cores to high-mass protostellar objects
arXiv:1005.1960 · doi:10.1051/0004-6361/201014532
Abstract
Aims: Our aim is to understand the evolutionary sequence of high-mass star formation from the earliest evolutionary stage of high-mass starless cores, via high-mass cores with embedded low- to intermediate-mass objects, to finally high-mass protostellar objects. Methods: Herschel far-infrared PACS and SPIRE observations are combined with existing data at longer and shorter wavelengths to characterize the spectral and physical evolution of massive star-forming regions. Results: The new Herschel images spectacularly show the evolution of the youngest and cold high-mass star-forming regions from mid-infrared shadows on the Wien-side of the spectral energy distribution (SED), via structures almost lost in the background emission around 100mum, to strong emission sources at the Rayleigh-Jeans tail. Fits of the SEDs for four exemplary regions covering evolutionary stages from high-mass starless cores to high-mass protostellar objects reveal that the youngest regions can be fitted by single-component black-bodies with temperatures on the order of 17K. More evolved regions show mid-infrared excess emission from an additional warmer component, which however barely contributes to the total luminosities for the youngest regions. Exceptionally low values of the ratio between bolometric and submm luminosity additionally support the youth of the infrared-dark sources. Conclusions: The Herschel observations reveal the spectral and physical properties of young high-mass star-forming regions in detail. The data clearly outline the evolutionary sequence in the images and SEDs. Future work on larger samples as well as incorporating full radiative transfer calculations will characterize the physical nature at the onset of massive star formation in even more depth.
4 pages, A&A Herschel special issue
References in corpus (7)
- Herschel Space Observatory - An ESA facility for far-infrared and submillimetre astronomy
- The Photodetector Array Camera and Spectrometer (PACS) on the Herschel Space Observatory
- The Herschel-SPIRE instrument and its in-flight performance
- From filamentary clouds to prestellar cores to the stellar IMF: Initial highlights from the Herschel Gould Belt survey
- A Catalog of Extended Green Objects (EGOs) in the GLIMPSE Survey: A new sample of massive young stellar object outflow candidates
- The SCUBA Legacy Catalogue: Continuum Objects Detected by SCUBA
- The earliest phases of high-mass star formation: a 3 square degree millimeter continuum mapping of Cygnus X
Cited by in corpus (36)
- ATLASGAL --- properties of a complete sample of Galactic clumps
- 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 ()
- Characterizing Precursors to Stellar Clusters with Herschel
- The earliest phases of star formation - A Herschel key project. The thermal structure of low-mass molecular cloud cores
- The Earliest Phases of Star Formation (EPoS): A Herschel Key Program - The precursors to high-mass stars and clusters
- High-fidelity view of the structure and fragmentation of the high-mass, filamentary IRDC G11.11-0.12
- The Earliest Phases of Star formation observed with Herschel (EPoS): The dust temperature and density distributions of B68
- ATLASGAL-selected massive clumps in the inner Galaxy III. Dust Continuum Characterization of an Evolutionary Sample
- Resolving the fragmentation of high line-mass filaments with ALMA: the integral shaped filament in Orion A
- Search for starless clumps in the ATLASGAL survey
- Weak and Compact Radio Emission in Early High-Mass Star Forming Regions: I. VLA Observations
- Filament Fragmentation in High-Mass Star Formation
- Galactic structure based on the ATLASGAL 870mum survey
- Mass reservoirs surrounding massive infrared dark clouds: A view by near-infrared dust extinction
- DNC/HNC Ratio of Massive Clumps in Early Evolutionary Stages of High-Mass Star Formation
- Carbon in different phases ([CII], [CI], and CO) in infrared dark clouds: Cloud formation signatures and carbon gas fractions
- Fragmentation and dynamical collapse of the starless high-mass star-forming region IRDC18310-4
- Deuterium fractionation and the degree of ionisation in massive clumps within infrared dark clouds
- Surveys of Clumps, Cores, and Condensations in Cygnus X: I. a New Catalog of ~0.1 pc Massive Dense Cores
- The onset of high-mass star formation in the direct vicinity of the galactic mini-starburst W43
- Are Infrared Dark Clouds Really Quiescent?
- Deuterium Fractionation as an Evolutionary Probe in Massive Proto-stellar/cluster Cores
- APEX/SABOCA observations of small-scale structure of infrared-dark clouds I. Early evolutionary stages of star-forming cores
- Triggered/sequential star formation? A multi-phase ISM study around the prominent IRDC G18.93-0.03
- The evolution of temperature and density structures of OB cluster-forming molecular clumps
- Physical and chemical complexity in high-mass star-forming regions with ALMA. I. Overview and evolutionary trends of physical properties
- Tightening the belt: Constraining the mass and evolution in SDC335
- Clustered star formation at early evolutionary stages. Physical and chemical analysis of the young star-forming regions ISOSS J22478+6357 and ISOSS J23053+5953
- The Earliest Phases of Star formation (EPoS): Temperature, density, and kinematic structure of the star-forming core CB 17
- Evolutionary tracks of massive stars during formation
- Evidence for a Cloud-Cloud Collision in Sh2-233 Triggering the Formation of the High-mass Protostar Object IRAS 05358+3543
- The physical and chemical structure of high-mass star-forming regions. Unraveling chemical complexity with the NOEMA large program "CORE"
- Sulphur-Bearing and Complex Organic Molecules in an Infrared Cold Core
- A Possible Chemical Clock in High-mass Star-forming Regions: N(HC3N)/N(N2H+)?
- Dense cores in the Seahorse infrared dark cloud: physical properties from modified blackbody fits to the far-infrared-submillimetre spectral energy distributions
- Investigating star-formation activity towards the southern HII region RCW 42