Gaia DR2 view of the Lupus V-VI clouds: the candidate diskless young stellar objects are mainly background contaminants
arXiv:1806.04943 · doi:10.1051/0004-6361/201833383
Abstract
Extensive surveys of star-forming regions with Spitzer have revealed populations of disk-bearing young stellar objects. These have provided crucial constraints, such as the timescale of dispersal of protoplanetary disks, obtained by carefully combining infrared data with spectroscopic or X-ray data. While observations in various regions agree with the general trend of decreasing disk fraction with age, the Lupus V and VI regions appeared to have been at odds, having an extremely low disk fraction. Here we show, using the recent Gaia data release 2 (DR2), that these extremely low disk fractions are actually due to a very high contamination by background giants. Out of the 83 candidate young stellar objects (YSOs) in these clouds observed by Gaia, only five have distances of 150 pc, similar to YSOs in the other Lupus clouds, and have similar proper motions to other members in this star-forming complex. Of these five targets, four have optically thick (Class II) disks. On the one hand, this result resolves the conundrum of the puzzling low disk fraction in these clouds, while, on the other hand, it further clarifies the need to confirm the Spitzer selected diskless population with other tracers, especially in regions at low galactic latitude like Lupus V and VI. The use of Gaia astrometry is now an independent and reliable way to further assess the membership of candidate YSOs in these, and potentially other, star-forming regions.
Accepted for publication on Astronomy&Astrophysics Letters
References in corpus (8)
- Gaia Data Release 2. Summary of the contents and survey properties
- The Gaia mission
- Gaia Data Release 2: The astrometric solution
- Gaia Data Release 2: using Gaia parallaxes
- X-Shooter spectroscopy of young stellar objects in Lupus: Accretion properties of class II and transitional objects
- The Spitzer c2d Survey of Large, Nearby, Interstellar Clouds. XI. Lupus Observed With IRAC and MIPS
- The Nature of Transition Circumstellar Disks II. Southern Molecular Clouds
- The evolution of photo-evaporating viscous discs in binaries
Cited by in corpus (20)
- A stellar mass dependence of structured disks: a possible link with exoplanet demographics
- The stellar population of Sco OB2 revealed by Gaia DR2 data
- Quantifying Variability of YSOs in the Mid-IR Over Six Years with NEOWISE
- Bridging the gap between protoplanetary and debris disks: separate evolution of millimeter and micrometer-sized dust
- A Census of the Stellar Populations in the Sco-Cen Complex
- Measuring the ratio of the gas and dust emission radii of protoplanetary disks in the Lupus star-forming region
- Lupus DANCe. Census of stars and 6D structure with Gaia-DR2 data
- An initial overview of the extent and structure of recent star formation within the Serpens Molecular Cloud using Gaia Data Release 2
- ALMA Survey of Lupus Class III Stars: Early Planetesimal Belt Formation and Rapid Disk Dispersal
- An ALMA survey of Orionis disks: from supernovae to planet formation
- A Gaia Survey for Young Stars Associated with the Lupus Clouds
- The influence of infall on the properties of protoplanetary discs
- Distances to nearby molecular clouds traced by young stars
- AGB interlopers in YSO catalogues hunted out by NEOWISE
- Distributed YSOs in the Perseus Molecular Cloud from the Gaia and LAMOST Surveys
- A Random Forest Approach to Identifying Young Stellar Object Candidates in the Lupus Star-Forming Region
- Spectroscopic Confirmation of a Population of Isolated, Intermediate-Mass YSOs
- Spectroscopy of Candidate Members of the Sco-Cen Complex
- New members of the Lupus I cloud based on Gaia astrometry Physical and accretion properties from X-Shooter spectra
- Gaps and Rings: A Near-Universal Trait of Extended Protoplanetary Discs