Dust properties across the CO snowline in the HD 163296 disk from ALMA and VLA observations
arXiv:1601.07542 · doi:10.1051/0004-6361/201527516
Abstract
To characterize the mechanisms of planet formation it is crucial to investigate the properties and evolution of protoplanetary disks around young stars, where the initial conditions for the growth of planets are set. Our goal is to study grain growth in the disk of the young, intermediate mass star HD163296 where dust processing has already been observed, and to look for evidence of growth by ice condensation across the CO snowline, already identified in this disk with ALMA. Under the hypothesis of optically thin emission we compare images at different wavelengths from ALMA and VLA to measure the opacity spectral index across the disk and thus the maximum grain size. We also use a Bayesian tool based on a two-layer disk model to fit the observations and constrain the dust surface density. The measurements of the opacity spectral index indicate the presence of large grains and pebbles (1 cm) in the inner regions of the disk (inside 50 AU) and smaller grains, consistent with ISM sizes, in the outer disk (beyond 150 AU). Re-analysing ALMA Band 7 Science Verification data we find (radially) unresolved excess continuum emission centered near the location of the CO snowline at 90 AU. Our analysis suggests a grain size distribution consistent with an enhanced production of large grains at the CO snowline and consequent transport to the inner regions. Our results combined with the excess in infrared scattered light found by Garufi et al. (2014) suggests the presence of a structure at 90~AU involving the whole vertical extent of the disk. This could be evidence for small scale processing of dust at the CO snowline.
12 pages, 17 figures. Accepted for publication in A\&A
References in corpus (9)
- Coagulation, fragmentation and radial motion of solid particles in protoplanetary disks
- The stickiness of micrometer-sized water-ice particles
- A multi-wavelength analysis for interferometric (sub-)mm observations of protoplanetary disks: radial constraints on the dust properties and the disk structure
- Millimeter imaging of HD 163296: probing the disk structure and kinematics
- Testing the theory of grain growth and fragmentation by millimeter observations of protoplanetary disks
- Grain growth in the envelopes and disks of Class I protostars
- Shadows and cavities in protoplanetary disks: HD163296, HD141569A, and HD150193A in polarized light
- Dynamical Stability of Imaged Planetary Systems in Formation: Application to HL Tau
- Modeling dust growth in protoplanetary disks: The breakthrough case
Cited by in corpus (39)
- An ALMA Survey of Protoplanetary Disks in the Orionis Cluster
- A Three-Dimensional View of Turbulence: Constraints on Turbulent Motions in the HD 163296 Protoplanetary Disk using DCO
- Imaging the water-snow line during a protostellar outburst
- Lupus disks with faint CO isotopologues: low gas/dust or large carbon depletion?
- A multi-wavelength analysis for interferometric (sub-)mm observations of protoplanetary disks: radial constraints on the dust properties and the disk structure
- Different dust and gas radial extents in protoplanetary disks: consistent models of grain growth and CO emission
- Physical properties of dusty protoplanetary disks in Lupus: evidence for viscous evolution?
- Radio Jets from Young Stellar Objects
- Dust Density Distribution and Imaging Analysis of Different Ice Lines in Protoplanetary Disks
- Measurement of Circumstellar Disk Sizes in the Upper Scorpius OB Association with ALMA
- Rings and gaps in the disc around Elias 24 revealed by ALMA
- An ALMA survey of DCN/HCN and DCO/HCO in protoplanetary disks
- The efficiency of dust trapping in ringed proto-planetary discs
- Polarized disk emission from Herbig Ae/Be stars observed using Gemini Planet Imager: HD 144432, HD 150193, HD 163296, and HD 169142
- Submillimetre dust polarisation and opacity in the HD163296 protoplanetary ring system
- Estimate on dust scale height from ALMA dust continuum image of the HD 163296 protoplanetary disk
- Evolution of protoplanetary disks from their taxonomy in scattered light: Group I vs. Group II
- Distribution of solids in the rings of the HD 163296 disk: a multiwavelength study
- Polycyclic Aromatic Hydrocarbon in Protoplanetary Disks around Herbig Ae/Be and T Tauri Stars
- 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
- Disk Polarization From Both Emission and Scattering of Magnetically Aligned Grains: The Case of NGC 1333 IRAS4A1
- V1094 Sco: a rare giant multi-ringed disk around a T Tauri star
- High-contrast imaging of HD 163296 with the Keck/NIRC2 L'-band vortex coronograph
- Snow-lines can be thermally unstable
- Determining the mid-plane conditions of circumstellar discs using gas and dust modelling: a study of HD 163296
- Multi-epoch Direct Imaging and Time-Variable Scattered Light Morphology of the HD 163296 Protoplanetary Disk
- Rotation curves in protoplanetary disks with thermal stratification
- Dust continuum emission and the upper limit fluxes of sub-millimeter water lines of the protoplanetary disk around HD 163296 observed by ALMA
- Herbig Stars: A Quarter Century of Progress
- HST Scattered Light Imaging and Modeling of the Edge-on Protoplanetary Disk ESO-H 569
- Asymmetric mid-plane gas in ALMA images of HD~100546
- Self-Induced Dust Traps Around Snow Lines in Protoplanetary Discs
- Disk Illumination and Jet Variability of the Herbig Ae Star HD 163296 Using Multi-Epoch HST/STIS Optical, Near-IR, and Radio Imagery and Spectroscopy
- Observing protoplanetary discs with the Square Kilometre Array -- I. Characterising pebble substructure caused by forming planets
- A MUSE view of the asymmetric jet from HD 163296
- Radial Drift and Concurrent Ablation of Boulder-Sized Objects
- Variability of Disk Emission in Pre-Main Sequence and related Stars. V. Occultation Events from the innermost disk region of the Herbig Ae Star HD 163296
- The potential of combining MATISSE and ALMA observations: Constraining the structure of the innermost region in protoplanetary discs