Gas and Dust Emission at the Outer Edge of Protoplanetary Disks
arXiv:0801.4763 · doi:10.1086/586730
Abstract
We investigate the apparent discrepancy between gas and dust outer radii derived from millimeter observations of protoplanetary disks. Using 230 and 345 GHz continuum and CO J=3-2 data from the Submillimeter Array for four nearby disk systems (HD 163296, TW Hydrae, GM Aurigae, and MWC 480), we examine models of circumstellar disk structure and the effects of their treatment of the outer disk edge. We show that for these disks, models described by power laws in surface density and temperature that are truncated at an outer radius are incapable of reproducing both the gas and dust emission simultaneously: the outer radius derived from the dust continuum emission is always significantly smaller than the extent of the molecular gas disk traced by CO emission. However, a simple model motivated by similarity solutions of the time evolution of accretion disks that includes a tapered exponential edge in the surface density distribution (and the same number of free parameters) does much better at reproducing both the gas and dust emission. While this analysis does not rule out the disparate radii implied by the truncated power-law models, a realistic alternative disk model, grounded in the physics of accretion, provides a consistent picture for the extent of both the gas and dust.
9 pages, 2 figures, accepted for publication in ApJ
References in corpus (5)
- An Inner Hole in the Disk around TW Hydrae Resolved in 7 Millimeter Dust Emission
- Millimeter imaging of HD 163296: probing the disk structure and kinematics
- Gas-phase CO in protoplanetary disks: a challenge for turbulent mixing
- Chemistry and line emission from evolving Herbig Ae disks
- Resolving and probing the circumstellar disk of the Herbig Ae star MWC 480 at 1.4 mm: Evolved dust?
Cited by in corpus (44)
- Protoplanetary Disk Structures in Ophiuchus
- Structure and evolution of pre-main sequence circumstellar disks
- Molecules with ALMA at Planet-forming Scales (MAPS) I: Program Overview and Highlights
- On the gas content of transitional disks: a VLT/X-Shooter study of accretion and winds
- The Impact of Dust Evolution and Photoevaporation on Disk Dispersal
- 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?
- Discovery of a Disk Gap Candidate at 20 AU in TW Hydrae
- The New Generation Planetary Population Synthesis (NGPPS). II. Planetary population of solar-like stars and overview of statistical results
- Measurement of Circumstellar Disk Sizes in the Upper Scorpius OB Association with ALMA
- Protoplanetary Disks in Ophiuchus as Seen From ALMA
- The time evolution of dusty protoplanetary disc radii: observed and physical radii differ
- An ALMA survey of DCN/HCN and DCO/HCO in protoplanetary disks
- Exclusion of Cosmic Rays in Protoplanetary Disks. II. Chemical Gradients and Observational Signatures
- The formation of the solar system
- Chemistry in Protoplanetary Disks: the gas-phase CO/H2 ratio and the Carbon reservoir
- Comparison of the dust and gas radial structure in the transition disk [PZ99] J160421.7-213028
- ALMA Observations of the Protostar L1527 IRS: Probing Details of the Disk and the Envelope Structures
- Gas Disk Sizes from CO Line Observations: A Test of Angular Momentum Evolution
- A Tale of Planet Formation: From Dust to Planets
- Stacking Spectra in Protoplanetary Disks: Detecting Intensity Profiles from Hidden Molecular Lines in HD 163296
- A CO survey in planet-forming disks: characterizing the gas content in the epoch of planet formation
- Molecules in the disk orbiting the twin young suns of V4046 Sgr
- ALMA observations of a misaligned binary protoplanetary disk system in Orion
- New constraints on the disk characteristics and companion candidates around T Cha with VLT/SPHERE
- The abundance and thermal history of water ice in the disk surrounding HD142527 from the DIGIT Herschel Key Program
- Formation and evolution of a protoplanetary disk: combining observations, simulations and cosmochemical constraints
- Gas inside the 97 au cavity around the transition disk Sz\,91
- HST Scattered Light Imaging and Modeling of the Edge-on Protoplanetary Disk ESO-H 569
- Constraining the radial drift of millimeter-sized grains in the protoplanetary disks in Lupus
- Diversity in the outcome of dust radial drift in protoplanetary discs
- High resolution observations of the outer disk around T Cha: the view from ALMA
- Circumstellar disks and planets. Science cases for next-generation optical/infrared long-baseline interferometers
- The Herschel/PACS view of the Cep OB2 region: Global protoplanetary disk evolution and clumpy star formation
- Exploring HNC and HCN line emission as probes of the protoplanetary disk temperature
- Unveiling the outer dust disc of TW Hya with deep ALMA observations
- High resolution observations of molecular emission lines toward the CI Tau proto-planetary disc: planet-carved gaps or shadowing?
- Submillimeter Observations of the Young Low-Mass Object IRAS 04158+2805
- Mid-Infrared Polarization of Herbig Ae/Be Discs
- Size and density sorting of dust grains in SPH simulations of protoplanetary disc II: Fragmentation
- Gas distribution in ODISEA sources from ALMA long-baseline observations in CO(2-1)
- Constraints on the gas-phase C/O ratio of DR Tau's outer disk from CS, SO, and CH observations
- An Incipient Debris Disk in the Chamaeleon I Cloud
- Molecules with ALMA at Planet-forming Scales (MAPS) III: Characteristics of Radial Chemical Substructures