2017A&A...603A.132F


Query : 2017A&A...603A.132F

2017A&A...603A.132F - Astronomy and Astrophysics, volume 603A, 132-132 (2017/7-1)

Millimeter observations of the disk around GW Orionis.

FANG M., SICILIA-AGUILAR A., WILNER D., WANG Y., ROCCATAGLIATA V., FEDELE D. and WANG J.Z.

Abstract (from CDS):

The GW Ori system is a pre-main sequence triple system (GW Ori A/B/C) with companions (GW Ori B/C) at ∼1AU and ∼8AU, respectively, from the primary (GW Ori A). The primary of the system has a mass of 3.9M, but shows a spectral type of G8. Thus, GW Ori A could be a precursor of a B star, but it is still at an earlier evolutionary stage than Herbig Be stars. GW Ori provides an ideal target for experiments and observations (being a "blown-up" solar system with a very massive sun and at least two upscaled planets). We present the first spatially resolved millimeter interferometric observations of the disk around the triple pre-main sequence system GW Ori, obtained with the Submillimeter Array, both in continuum and in the 12CO J=2-1, 13CO J=2-1, and C18O J=2-1 lines. These new data reveal a huge, massive, and bright disk in the GW Ori system. The dust continuum emission suggests a disk radius of around 400 AU, but the 12CO J=2-1 emission shows a much more extended disk with a size around 1300 AU. Owing to the spatial resolution (∼1''), we cannot detect the gap in the disk that is inferred from spectral energy distribution (SED) modeling. We characterize the dust and gas properties in the disk by comparing the observations with the predictions from the disk models with various parameters calculated with a Monte Carlo radiative transfer code RADMC-3D. The disk mass is around0.12M, and the disk inclination with respect to the line of sight is around ∼35°. The kinematics in the disk traced by the CO line emission strongly suggest that the circumstellar material in the disk is in Keplerian rotation around GW Ori.Tentatively substantial C18O depletion in gas phase is required to explain the characteristics of the line emission from the disk.

Abstract Copyright: © ESO, 2017

Journal keyword(s): circumstellar matter - stars: pre-main sequence - binaries: spectroscopic - stars: individual: GW Orionis - stars: individual: GW Orionis

Simbad objects: 6

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Number of rows : 6
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 QSO B0420-0127 QSO 04 23 15.80072217 -01 20 33.0656073   17.50 17.00 16.28   ~ 1207 3
2 V* GW Ori Or* 05 29 08.3928710640 +11 52 12.666457092   10.83 10.10 9.52   G5/8Ve 351 0
3 QSO J0530+13 Bla 05 30 56.41674741 +13 31 55.1494688     20.00 19.35   ~ 959 1
4 Cl Collinder 69 OpC 05 35 10.1 +09 48 47     2.8     ~ 313 0
5 3C 273 BLL 12 29 06.6998257176 +02 03 08.597629980   13.05 14.830 14.11   ~ 5802 1
6 3C 279 Bla 12 56 11.16657958 -05 47 21.5251510   18.01 17.75 15.87   ~ 3045 2

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