Massive young disks around Herbig Ae stars
arXiv:1105.0759 · doi:10.1051/0004-6361/201016306
Abstract
Herbig Ae stars (HAe) are the precursors of Vega-type systems and, therefore, crucial objects in planet formation studies. Thus far, only a few disks associated with HAe stars have been studied using millimetre interferometers. Our aim is to determine the dust evolution and the lifetime of the disks associated with Herbig Ae stars. We imaged the continuum emission at 3 mm and 1.3 mm of the Herbig Ae/Be stars BD+61154, RR Tau, VY Mon and LkHa 198 using the Plateau de Bure Interferometer (PdBI). These stars are in the upper end of the stellar mass range of the Herbig Ae stars (stellar mass greater than 3 solar masses). Our measurements were used to complete the Spectral Energy Distribution (SED). The modelling of the SED, in particular the FIR-mm part, allow us to determine the masses and dust properties of these disks. We detected the disks associated with BD+61154, RR Tau and VY Mon with disk masses of 0.35 Msun, 0.05 Msun and 0.40 Msun respectively. The disk around LkHa 198 was not detected with an upper limit to the disk mass of 0.004 Msun. We detected, however, the disks associated with the younger stellar objects LkHa 198--IR and LkHa 198-mm that are located in the vicinity of LkHa 198. The fitting of the mm part of the SED reveal that the grains in the mid-plane of the disks around BD+61154, RR Tau and VY Mon have sizes of 1--1000 microns. Therefore, grains have not grown to centimetre sizes in these disks yet. These massive (M>3 Msun) and young (about 1 Myr) HAe stars are surrounded by massive (>0.04 Msun) disks with grains of micron-millimetre sizes. Although grain growth is proceeding in these disks, their evolutionary stage is prior to the formation of planetesimals. These disks are less evolved than those detected around T Tauri and Herbig Be stars.
References in corpus (19)
- Gas- and dust evolution in protoplanetary disks
- Dust size distributions in coagulation/fragmentation equilibrium: Numerical solutions and analytical fits
- Dust grain growth in rho-Ophiuchi protoplanetary disks
- Gas and Dust Emission at the Outer Edge of Protoplanetary Disks
- Evolution of emission line activity in intermediate mass young stars
- Parameters of Herbig Ae/Be and Vega-type stars
- Millimeter imaging of HD 163296: probing the disk structure and kinematics
- Disks around CQ Tau and MWC 758: dense PDR or gas dispersal?
- Circumstellar disks around Herbig Be stars
- A Submillimeter Array Survey of Protoplanetary Disks in the Orion Nebula Cluster
- A sub-millimeter Mapping Survey of Herbig AeBe Stars
- Large grains in disks around young stars: ATCA observations of WW Cha, RU Lup, and CS Cha
- New constraints on dust grain size and distribution in CQ Tau
- What can we learn about protoplanetary disks from analysis of mid-infrared carbonaceous dust emission?
- Aperture Synthesis Imaging of V892 Tau and PV Cep: Disk Evolution
- Resolving and probing the circumstellar disk of the Herbig Ae star MWC 480 at 1.4 mm: Evolved dust?
- An evolved disk surrounding the massive main sequence star MWC 297?
- The dusty disk around VV Ser
- The Molecular Gas Environment around Two Herbig Ae/Be Stars: Resolving the Outflows of LkHa 198 and LkHa 225S
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- GASPS - a Herschel survey of gas and dust in Protoplanetary Disks: Summary and Initial Statistics
- Collapse of a molecular cloud core to stellar densities: the formation and evolution of pre-stellar discs
- Homogeneous study of Herbig Ae/Be stars from spectral energy distributions and Gaia EDR3
- Diagnosing Mass Flows Around Herbig Ae/Be Stars Using the He I 10830 Line
- Polycyclic Aromatic Hydrocarbon in Protoplanetary Disks around Herbig Ae/Be and T Tauri Stars
- Herschel far-infrared observations of the Carina Nebula complex II: The embedded young stellar and protostellar population
- Optical Mass Flow Diagnostics in Herbig Ae/Be Stars
- A 1.3 mm SMA Survey of 29 Variable Young Stellar Objects
- An SMA Survey of Chemistry in Disks around Herbig AeBe Stars
- A survey of IRAS young stellar object candidates. Searching for large-scale Herbig-Haro objects
- Re-visiting the case of R Mon: Is CO removed at R<20 au?