Published March 20, 2014 | Version v1
Journal article

ALMA observations of the Orion proplyds

  • 1. National Research Council Canada, 5071 West Saanich Road, Victoria, BC, V9E 2E7 (Canada)
  • 2. Harvard-Smithsonian Center for Astrophysics, 60 Garden Street, Cambridge, MA 02138 (United States)
  • 3. Institute for Astronomy, University of Hawaii, 2680 Woodlawn Drive, Honolulu, HI 96822 (United States)
  • 4. CASA, University of Colorado, CB 389, Boulder, CO 80309 (United States)
  • 5. Department of Astronomy, California Institute of Technology, MC 249-17, Pasadena, CA 91125 (United States)
  • 6. Van Vleck Observatory, Astronomy Department, Wesleyan University, 96 Foss Hill Drive, Middletown, CT 06459 (United States)

Description

We present Atacama Large Millimeter/submillimeter Array (ALMA) observations of protoplanetary disks ('proplyds') in the Orion Nebula Cluster. We imaged five individual fields at 856 μm containing 22 Hubble Space Telescope (HST)-identified proplyds and detected 21 of them. Eight of those disks were detected for the first time at submillimeter wavelengths, including the most prominent, well-known proplyd in the entire Orion Nebula, 114-426. Thermal dust emission in excess of any free-free component was measured in all but one of the detected disks, and ranged between 1 and 163 mJy, with resulting disk masses of 0.3-79 M jup. An additional 26 stars with no prior evidence of associated disks in HST observations were also imaged within the 5 fields, but only 2 were detected. The disk mass upper limits for the undetected targets, which include OB stars, θ1 Ori C, and θ1 Ori F, range from 0.1 to 0.6 M jup. Combining these ALMA data with previous Submillimeter Array observations, we find a lack of massive (≳3 M jup) disks in the extreme-UV-dominated region of Orion, within 0.03 pc of θ1 Ori C. At larger separations from θ1 Ori C, in the far-UV-dominated region, there is a wide range of disk masses, similar to what is found in low-mass star forming regions. Taken together, these results suggest that a rapid dissipation of disk masses likely inhibits potential planet formation in the extreme-UV-dominated regions of OB associations, but leaves disks in the far-UV-dominated regions relatively unaffected.

Availability note (English)

Available from http://dx.doi.org/10.1088/0004-637X/784/1/82

Additional details

Identifiers

Publishing Information

Journal Title
Astrophysical Journal
Journal Volume
784
Journal Issue
1
Journal Page Range
[8 p.]
ISSN
0004-637X
CODEN
ASJOAB

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
46057806
Subject category
S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
Descriptors DEI
DUSTS; EMISSION; IMAGES; LEAVES; MASS; NEBULAE; PLANETS; PROTOPLANETS; SPACE; STARS; TELESCOPES; WAVELENGTHS