SIMBAD references

2013A&A...552A.115R - Astronomy and Astrophysics, volume 552A, 115-115 (2013/4-1)

Identification of transitional disks in Chamaeleon with Herschel.

RIBAS A., MERIN B., BOUY H., ALVES DE OLIVEIRA C., ARDILA D.R., PUGA E., KOSPAL A., SPEZZI L., COX N.L.J., PRUSTI T., PILBRATT G.L., ANDRE P., MATRA L. and VAVREK R.

Abstract (from CDS):

Transitional disks are circumstellar disks with inner holes that in some cases are produced by planets and/or substellar companions in these systems. For this reason, these disks are extremely important for the study of planetary system formation. The Herschel Space Observatory provides an unique opportunity for studying the outer regions of protoplanetary disks. In this work we update previous knowledge on the transitional disks in the Chamaeleon I and II regions with data from the Herschel Gould Belt Survey. We propose a new method for transitional disk classification based on the WISE 12µm - PACS 70µm color, together with inspection of the Herschel images. We applied this method to the population of Class II sources in the Chamaeleon region and studied the spectral energy distributions of the transitional disks in the sample. We also built the median spectral energy distribution of Class II objects in these regions for comparison with transitional disks. The proposed method allows a clear separation of the known transitional disks from the Class II sources. We find six transitional disks, all previously known, and identify five objects previously thought to be transitional as possibly non-transitional. We find higher fluxes at the PACS wavelengths in the sample of transitional disks than those of Class II objects. We show the Herschel 70µm band to be a robust and efficient tool for transitional disk identification. The sensitivity and spatial resolution of Herschel reveals a significant contamination level among the previously identified transitional disk candidates for the two regions, which calls for a revision of previous samples of transitional disks in other regions. The systematic excess found at the PACS bands could be either a result of the mechanism that produces the transitional phase, or an indication of different evolutionary paths for transitional disks and Class II sources.

Abstract Copyright:

Journal keyword(s): stars: formation - stars: pre-main sequence - protoplanetary disks - planets and satellites: formation

Simbad objects: 22

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