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First Science Observations with SOFIA/FORCAST: Properties of Intermediate-Luminosity Protostars and Circumstellar Disks in OMC-2

Authors :
Adams, Joseph D.
Herter, Terry L.
Osorio, Mayra
Macias, Enrique
Megeath, S. Thomas
Fischer, William J.
Ali, Babar
Calvet, Nuria
D'Alessio, Paola
De Buizer, James M.
Gull, George E.
Henderson, Charles P.
Keller, Luke D.
Morris, Mark R.
Remming, Ian S.
Schoenwald, Justin
Shuping, Ralph Y.
Stacey, Gordon
Stanke, Thomas
Stutz, Amelia
Vacca, William
Adams, Joseph D.
Herter, Terry L.
Osorio, Mayra
Macias, Enrique
Megeath, S. Thomas
Fischer, William J.
Ali, Babar
Calvet, Nuria
D'Alessio, Paola
De Buizer, James M.
Gull, George E.
Henderson, Charles P.
Keller, Luke D.
Morris, Mark R.
Remming, Ian S.
Schoenwald, Justin
Shuping, Ralph Y.
Stacey, Gordon
Stanke, Thomas
Stutz, Amelia
Vacca, William
Publication Year :
2012

Abstract

We examine eight young stellar objects in the OMC-2 star forming region based on observations from the SOFIA/FORCAST early science phase, the Spitzer Space Telescope, the Herschel Space Observatory, 2MASS, APEX, and other results in the literature. We show the spectral energy distributions of these objects from near-infrared to millimeter wavelengths, and compare the SEDs with those of sheet collapse models of protostars and circumstellar disks. Four of the objects can be modelled as protostars with infalling envelopes, two as young stars surrounded by disks, and the remaining two objects have double-peaked SEDs. We model the double-peaked sources as binaries containing a young star with a disk and a protostar. The six most luminous sources are found in a dense group within a 0.15 x 0.25 pc region; these sources have luminosities ranging from 300 L_sun to 20 L_sun. The most embedded source (OMC-2 FIR 4) can be fit by a class 0 protostar model having a luminosity of ~50 L_sun and mass infall rate of ~10^-4 solar masses per year.<br />Comment: Accepted by ApJ Letters

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1363404031
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1088.2041-8205.749.2.L24