Confronting Standard Models of Proto--Planetary Disks With New Mid--Infrared Sizes from the Keck Interferometer
arXiv:1604.06756 · doi:10.3847/0004-637X/826/2/120
Abstract
We present near and mid-infrared interferometric observations made with the Keck Interferometer Nuller and near-contemporaneous spectro-photometry from the IRTF of 11 well known young stellar objects, several observed for the first time in these spectral and spatial resolution regimes. With AU-level spatial resolution, we first establish characteristic sizes of the infrared emission using a simple geometrical model consisting of a hot inner rim and mid-infrared disk emission. We find a high degree of correlation between the stellar luminosity and the mid-infrared disk sizes after using near-infrared data to remove the contribution from the inner rim. We then use a semi-analytical physical model to also find that the very widely used "star + inner dust rim + flared disk" class of models strongly fails to reproduce the SED and spatially-resolved mid-infrared data simultaneously; specifically a more compact source of mid-infrared emission is required than results from the standard flared disk model. We explore the viability of a modification to the model whereby a second dust rim containing smaller dust grains is added, and find that the two-rim model leads to significantly improved fits in most cases. This complexity is largely missed when carrying out SED modelling alone, although detailed silicate feature fitting by McClure et al. 2013 recently came to a similar conclusion. As has been suggested recently by Menu et al. 2015, the difficulty in predicting mid-infrared sizes from the SED alone might hint at "transition disk"-like gaps in the inner AU; however, the relatively high correlation found in our mid-infrared disk size vs. stellar luminosity relation favors layered disk morphologies and points to missing disk model ingredients instead.
References in corpus (12)
- First Results from High Angular Resolution ALMA Observations Toward the HL Tau Region
- Disks around CQ Tau and MWC 758: dense PDR or gas dispersal?
- Circumstellar disks around Herbig Be stars
- Detection of an inner gaseous component in a Herbig Be star accretion disk: Near- and mid-infrared spectro-interferometry and radiative transfer modeling of MWC 147
- The structure of disks around intermediate-mass young stars from mid-infrared interferometry. Evidence for a population of group II disks with gaps
- Variability of Disk Emission in Pre-Main Sequence and Related Stars. I. HD 31648 and HD 163296 - Isolated Herbig Ae Stars Driving Herbig-Haro Flows
- Strong Near-Infrared Emission Interior to the Dust-Sublimation Radius of Young Stellar Objects MWC275 and AB Aur
- Mid-infrared size survey of Young Stellar Objects: Description of Keck segment-tilting experiment and basic results
- Large dust grains in the inner region of circumstellar disks
- The T Tauri star RY Tau as a case study of the inner regions of circumstellar dust disks
- Resolving and probing the circumstellar disk of the Herbig Ae star MWC 480 at 1.4 mm: Evolved dust?
- Planet Formation Imager (PFI): Introduction and Technical Considerations
Cited by in corpus (12)
- The Ring Structure in the MWC 480 Disk Revealed by ALMA
- Dust-Pileup at the Dead-Zone Inner Edge and Implications for the Disk Shadow
- The asymmetric inner disk of the Herbig Ae star HD 163296 in the eyes of VLTI/MATISSE: evidence for a vortex?
- A "Rosetta Stone" for protoplanetary disks: The synergy of multi-wavelength observations
- Probing the Inner Disk Emission of the Herbig Ae Stars HD 163296 and HD 190073
- Variability of Disk Emission in Pre-Main Sequence and Related Stars IV. Investigating the Structural Changes in the Inner Disk Region of MWC 480
- Revealing the Star-Disk-Jet Connection in GM Aur using Multiwavelength Variability
- Mid-infrared interferometric variability of DG Tau: implications for the inner-disk structure
- Improved Constraints on the Disk Around MWC 349A from the 23-Meter LBTI
- HD 163296 and its Giant Planets: Creation of Exo-comets, Interstellar Objects and Transport of Volatile Material
- Multi dust species inner rim in magnetized protoplanetary disks
- The innermost astronomical unit of protoplanetary disks