Dense Molecular Cores Being Externally Heated
arXiv:1605.06895 · doi:10.3847/0004-637X/824/2/85
Abstract
We present results of our study on eight dense cores, previously classified as starless, using infrared (3-160 {\micron}) imaging observations with \textit{AKARI} telescope and molecular line (HCN and NH) mapping observations with \textit{KVN} telescope. Combining our results with the archival IR to mm continuum data, we examined the starless nature of these eight cores. Two of the eight cores are found to harbor faint protostars having luminosity of L. The other six cores are found to remain as starless and probably are in a dynamically transitional state. The temperature maps produced using multi-wavelength images show an enhancement of about 3-6 K towards the outer boundary of these cores, suggesting that they are most likely being heated externally by nearby stars and/or interstellar radiation fields. Large virial parameters and an over-dominance of red asymmetric line profiles over the cores may indicate that the cores are set into either an expansion or an oscillatory motion, probably due to the external heating. Most of the starless cores show coreshine effect due to the scattering of light by the micron-size dust grains. This may imply that the age of the cores is of the order of years, being consistent with the timescale required for the cores to evolve into an oscillatory stage due to the external perturbation. Our observational results support the idea that the external feedback from nearby stars and/or interstellar radiation fields may play an important role in the dynamical evolution of the cores.
48 pages, 8 figures,accepted for publication in ApJ
References in corpus (14)
- Cold Dark Clouds: The Initial Conditions for Star Formation
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- Low Virial Parameters in Molecular Clouds: Implications for High Mass Star Formation and Magnetic Fields
- On the internal structure of starless cores. II. A molecular survey of L1498 and L1517B
- Three-Dimensional Radiation Transfer in Young Stellar Objects
- The Earliest Phases of Star formation observed with Herschel (EPoS): The dust temperature and density distributions of B68
- OVRO N2H+ Observations of Class 0 Protostars: Constraints on the Formation of Binary Stars
- Probing Inward Motions in Starless Cores Using The HCN J = 1-0 Hyperfine Transitions : A Pointing Survey Toward Central Regions
- Photometry using the Infrared Array Camera on the Spitzer Space Telescope
- Condition for the formation of micron-sized dust grains in dense molecular cloud cores
- The Dynamical State fo the Starless Dense Core FeSt 1-457: A Pulsating Globule?
- The Dynamical State of the Starless Dense Core FeSt 1-457: A Pulsating Globule?
- Oscillations in the stable starless core Barnard 68
- The Approach to Collapse of Molecular Clouds
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