Protoplanetary disk rings and gaps across ages and luminosities
arXiv:1901.03680 · doi:10.3847/1538-4357/aafd31
Abstract
Since the discovery of the multi-ring structure of the HL Tau disk, ALMA data suggest that the dust continuum emission of many, if not all, protoplanetary disks consists of rings and gaps, no matter their spectral type or age. The origin of these gaps so far remains unclear. We present a sample study of 16 disks with multiple ring-like structures in the continuum, using published ALMA archival data, to compare their morphologies and gap locations in a systematic way. The 16 targets range from early to late type stars, from <0.5 Myr to >10 Myr, from ~0.2 to 40 L_Sun and include both full and transitional disks with cleared inner dust cavities. Stellar ages are revised using new Gaia distances. Gap locations are derived using a simple radial fit to the intensity profiles. Using a radiative transfer model, the temperature profiles are computed. The gap radii generally do not correspond to the orbital radii of snow lines of the most common molecules. A snow line model can likely be discarded as a common origin of multi-ring systems. In addition, there are no systematic trends in the gap locations that could be related to resonances of planets. Finally, the outer radius of the disks decreases for the oldest disks in the sample, indicating that if multi-ring disks evolve in a similar way, outer dust rings either dissipate with the gas or grow into planetesimal belts.
23 pages, 10 figures. Accepted by ApJ
References in corpus (28)
- New evolutionary models for pre-main sequence and main sequence low-mass stars down to the hydrogen-burning limit
- Coagulation, fragmentation and radial motion of solid particles in protoplanetary disks
- On the Luminosity of Young Jupiters
- X-Shooter spectroscopy of young stellar objects in Lupus: Accretion properties of class II and transitional objects
- A Steeper than Linear Disk Mass-Stellar Mass Scaling Relation
- Gaps, Rings, and Non-Axisymmetric Structures in Protoplanetary Disks - From Simulations to ALMA Observations
- Evidence of fast pebble growth near condensation fronts in the HL Tau protoplanetary disk
- A Submillimeter View of Circumstellar Dust Disks in Ophiuchus
- Imaging the water-snow line during a protostellar outburst
- Multiple Disk Gaps and Rings Generated by a Single Super-Earth
- The Gould's Belt Distances Survey (GOBELINS) I. Trigonometric parallax distances and depth of the Ophiuchus complex
- Gas density drops inside dust cavities of transitional disks around young stars observed with ALMA
- On the gas content of transitional disks: a VLT/X-Shooter study of accretion and winds
- Different dust and gas radial extents in protoplanetary disks: consistent models of grain growth and CO emission
- CO and dust properties in the TW Hya disk from high-resolution ALMA observations
- On the formation of multiple concentric rings and gaps in protoplanetary disks
- ALMA hints at the presence of two companions in the disk around HD 100546
- Dust Density Distribution and Imaging Analysis of Different Ice Lines in Protoplanetary Disks
- A Complete ALMA Map of the Fomalhaut Debris Disk
- Five steps in the evolution from protoplanetary to debris disk
- An opening criterion for dust gaps in protoplanetary discs
- Dust-trapping vortices and a potentially planet-triggered spiral wake in the pre-transitional disk of V1247 Orionis
- Vortices and spirals in the HD135344B transition disk
- The Masses of Transition Circumstellar Disks: Observational Support for Photoevaporation Models
- HD 169142 in the eyes of ZIMPOL/SPHERE
- A 80 au cavity in the disk around HD 34282
- Protoplanetary Disc Response to Distant Tidal Encounters in Stellar Clusters
- On the Origin of Banded Structure in Dusty Protoplanetary Discs: HL Tau and TW Hya
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