Steepening of the 820 micron continuum surface-brightness profile signals dust evolution in TW Hya's disk
arXiv:1512.05553 · doi:10.1051/0004-6361/201527754
Abstract
Grain growth in planet-forming disks is the first step toward the formation of planets. The growth of grains and their inward drift leaves a distinct imprint on the dust surface-density distribution and the resulting surface-brightness profile of the thermal continuum emission. We determine the surface-brightness profile of the continuum emission using resolved observations at millimeter wavelengths of the disk around TW Hya, and infer the signature of dust evolution on the surface density and dust opacity. Archival ALMA observations at 820 micron on baselines up to 410 kilolambda are compared to parametrized disk models to determine the surface-brightness profile. Under the assumption of a constant dust opacity, a broken radial power law best describes the dust surface density, with a slope of -0.53 +/- 0.01 from the 4.1 au radius of the (already known) inner hole to a turn-over radius of 47.1 +/- 0.2 au, steepening to -8.0 +/- 0.1 at larger radii. The emission drops below the detection limit beyond ~60 au. The shape of the dust surface density is consistent with theoretical expectations for grain growth, fragmentation, and drift, but its total dust content and its turn-over radius are too large for TW Hya's age of 8-10 Myr even when taking into account a radially varying dust opacity. Higher resolution imaging with ALMA of TW Hya and other disks is required to establish if unseen gaps associated with, e.g., embedded planets trap grains at large radii or if locally enhanced grain growth associated with the CO snow line explains the extent of the millimeter-continuum surface brightness profile. In the latter case, population studies should reveal a correlation between the location of the CO snow line and the extent of the millimeter continuum. In the former case, and if CO freeze out promotes planet formation, this correlation should extend to the location of gaps as well.
(8 pages, 4 figures, accepted by Astronomy & Astrophysics)
References in corpus (9)
- Gas- and dust evolution in protoplanetary disks
- Evidence of fast pebble growth near condensation fronts in the HL Tau protoplanetary disk
- Gas and Dust Emission at the Outer Edge of Protoplanetary Disks
- An Inner Hole in the Disk around TW Hydrae Resolved in 7 Millimeter Dust Emission
- Discovery of a Disk Gap Candidate at 20 AU in TW Hydrae
- ALMA hints at the presence of two companions in the disk around HD 100546
- Peering into the Giant Planet Forming Region of the TW Hydrae Disk with the Gemini Planet Imager
- Large grains in disks around young stars: ATCA observations of WW Cha, RU Lup, and CS Cha
- Dynamical Evolution of the TW Hya Association
Cited by in corpus (25)
- Ringed Substructure and a Gap at 1 AU in the Nearest Protoplanetary Disk
- Gaps and Rings in an ALMA Survey of Disks in the Taurus Star-forming Region
- ALMA Survey of Lupus Protoplanetary Disks II: Gas Disk Radii
- Compact Disks in a High Resolution ALMA Survey of Dust Structures in the Taurus Molecular Cloud
- First detection of gas-phase methanol in a protoplanetary disk
- Turbulence in the TW Hya Disk
- Close-in planetesimal formation by pile-up of drifting pebbles
- A Millimeter Continuum Size-Luminosity Relationship for Protoplanetary Disks
- Hydrocarbon emission rings in protoplanetary disks induced by dust evolution
- The Coupled Physical Structure of Gas and Dust in the IM Lup Protoplanetary Disk
- Mass inventory of the giant-planet formation zone in a solar nebula analog
- ALMA Observations of a Gap and a Ring in the Protoplanetary Disk around TW Hya
- Measurement of Circumstellar Disk Sizes in the Upper Scorpius OB Association with ALMA
- A cavity and further radial substructures in the disk around HD~97048
- A Gap with a Deficit of Large Grains in the protoplanetary disk around TW Hya
- ALMA reveals the anatomy of the mm-sized dust and molecular gas in the HD 97048 disk
- New Constraints From Dust Lines On The Surface Densities Of Protoplanetary Disks
- ALMA Measurements of Circumstellar Material in the GQ Lup System
- A Surface Density Perturbation in the TW Hydrae Disk at 95 au Traced by Molecular Emission
- Using Ice and Dust Lines to Constrain the Surface Densities of Protoplanetary Disks
- Scattering-induced intensity reduction: large mass content with small grains in the inner region of the TW Hya disk
- A 80 au cavity in the disk around HD 34282
- The inner structure of the TW Hya Disk as revealed in scattered light
- TW Hya: an old protoplanetary disc revived by its planet
- On the methanol emission detection in the TW Hya disc: the role of grain surface chemistry and non-LTE excitation