An Incipient Debris Disk in the Chamaeleon I Cloud
arXiv:1706.05032 · doi:10.3847/1538-4357/aa7a10
Abstract
The point at which a protoplanetary disk becomes a debris disk is difficult to identify. To better understand this, here we study the 40~AU separation binary T~54 in the Chamaeleon I cloud. We derive a K5 spectral type for T~54~A (which dominates the emission of the system) and an age of 2~Myr. However, the dust disk properties of T~54 are consistent with those of debris disks seen around older and earlier-type stars. At the same time, T~54 has evidence of gas remaining in the disk as indicated by [Ne II], [Ne III], and [O I] line detections. We model the spectral energy distribution of T~54 and estimate that 310 Earth-masses of small dust grains (0.25~m) are present in an optically thin circumbinary disk along with at least 310 Earth-masses of larger (10~m) grains within a circumprimary disk. Assuming a solar-like mixture, we use Ne line luminosities to place a minimum limit on the gas mass of the disk (310 Earth-masses) and derive a gas-to-dust mass ratio of 0.1. We do not detect substantial accretion, but we do see H in emission in one epoch, suggestive that there may be intermittent dumping of small amounts of matter onto the star. Considering the low dust mass, the presence of gas, and young age of T~54, we conclude that this system is on the bridge between the protoplanetary and debris disk stages.
15 pages, 9 figures, accepted to ApJ
References in corpus (31)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Photoevaporation of protoplanetary discs II: evolutionary models and observable properties
- Search for Associations Containing Young stars (SACY): I. Sample & Searching Method
- The Stellar Population of the Chamaeleon I Star-Forming Region
- On the Diversity of the Taurus Transitional Disks: UX Tau A & Lk Ca 15
- A Triple Protostar System Formed via Fragmentation of a Gravitationally Unstable Disk
- Molecular Gas Clumps from the Destruction of Icy Bodies in the Pictoris Debris Disk
- Lupus disks with faint CO isotopologues: low gas/dust or large carbon depletion?
- Mass measurements in protoplanetary disks from hydrogen deuteride
- On the gas content of transitional disks: a VLT/X-Shooter study of accretion and winds
- Gas and Dust Emission at the Outer Edge of Protoplanetary Disks
- The Carbon-Rich Gas in the Beta Pictoris Circumstellar Disk
- Neon Fine-Structure Line Emission By X-ray Irradiated Protoplanetary Disks
- Debris Disks in the Scorpius-Centaurus OB Association Resolved by ALMA
- Five steps in the evolution from protoplanetary to debris disk
- A Multiplicity Census of Young Stars in Chamaeleon I
- New Low-Mass Stars and Brown Dwarfs with Disks in the Chamaeleon I Star-Forming Region
- Spatial separation of small and large grains in the transitional disk around the young star IRS 48
- The dispersal of protoplanetary disks around binary stars
- Atomic Diagnostics of X-ray Irradiated Protoplanetary Disks
- Rotation and activity of pre-main-sequence stars
- Sub-stellar Companions and Stellar Multiplicity in the Taurus Star-Forming Region
- A spectroscopic census in young stellar regions: the Sigma Orionis cluster
- A slowly accreting ~10 Myr old transitional disk in Orion OB1a
- Characterization of the inner disk around HD 141569 A from Keck/NIRC2 L-band vortex coronagraphy
- Herschel evidence for disk flattening or gas depletion in transitional disks
- Exocomet signatures around the A-shell star Leo?
- CARMA Millimeter-Wave Aperture Synthesis Imaging of the HD 32297 Debris Disk
- The compact H emitting regions of the Herbig Ae/Be stars HD 179218 and HD 141569 from CHARA spectro-interferometry
- Herschel-PACS observations of far-IR lines in YSOs I: [OI] and H2O at 63 microns
- A new Herschel view of the young star T54: not a transitional disk?