Demographics of Transition Discs in Ophiuchus and Taurus
arXiv:1504.05198 · doi:10.1093/mnras/stv839
Abstract
Transition disc systems are young stars that appear to be on the verge of dispersing their protoplanetary discs. We explore the nature of these systems by comparing the stellar accretion rates and disc masses of transition discs and normal T Tauri stars in Taurus and Ophiuchus. After controlling for the known dependencies of stellar accretion rate and disc mass and on age, stellar accretion rate on stellar mass, and disc mass on the presence of stellar or sub-stellar companions, we find that the normal T Tauri stars show a trend of stellar accretion rate increasing with disc mass. The transition discs tend to have higher average disc masses than normal T Tauri stars as well as lower accretion rates than normal T Tauri stars of the same disc mass. These results are most consistent with the interpretation that the transition discs have formed objects massive enough to alter the accretion flow, i.e., single or multiple giant planets. Several Ophiuchus T Tauri stars that are not known transition disc systems also have very low accretion rates for their disc masses. We speculate on the possible nature of these sources.
9 pages, 2 figures, accepted for publication in MNRAS
References in corpus (17)
- Some Aspects of Measurement Error in Linear Regression of Astronomical Data
- Protoplanetary Disk Structures in Ophiuchus
- Photoevaporation of protoplanetary discs II: evolutionary models and observable properties
- Accretion in the Rho-Oph pre-main sequence stars
- A Submillimeter View of Circumstellar Dust Disks in Ophiuchus
- Dust filtration at gap edges: Implications for the spectral energy distributions of discs with embedded planets
- Dust dynamics during protoplanetary disc clearing
- Demographics of Transition Objects
- On the gas content of transitional disks: a VLT/X-Shooter study of accretion and winds
- Can grain growth explain transition disks?
- NIR Spectroscopy of the HAeBe Star HD 100546: III. Further Evidence of an Orbiting Companion?
- Accretion-related properties of Herbig Ae/Be stars. Comparison with T Tauris
- The Masses of Transition Circumstellar Disks: Observational Support for Photoevaporation Models
- Accreting planets as dust dams in `transition' discs
- CO Fundamental Emission from V836 Tau
- The Herschel/PACS view of the Cep OB2 region: Global protoplanetary disk evolution and clumpy star formation
- The Structure of the DoAr 25 Circumstellar Disk
Cited by in corpus (20)
- Spiral Density Waves in a Young Protoplanetary Disk
- Radiation Hydrodynamical Turbulence In Protoplanetary Disks: Numerical Models and Observational Constraints
- Grand Design Spiral Arms in A Young Forming Circumstellar Disk
- Exploring dust around HD142527 down to 0.025" / 4au using SPHERE/ZIMPOL
- An ALMA survey of DCN/HCN and DCO/HCO in protoplanetary disks
- Bridging the gap between protoplanetary and debris disks: separate evolution of millimeter and micrometer-sized dust
- PENELLOPE: the ESO data legacy program to complement the Hubble UV Legacy Library of Young Stars (ULLYSES) I. Survey presentation and accretion properties of Orion OB1 and -Orionis
- A continuum of accretion burst behavior in young stars observed by K2
- Dynamical Masses of Low Mass Stars in the Taurus and Ophiuchus Star Forming Regions
- Wind-driven Accretion in Transitional Protostellar Disks
- The Frequency Of Binary Star Interlopers Amongst Transitional Discs
- ALMA Observations of the Asymmetric Dust Disk around DM Tau
- A "Rosetta Stone" for protoplanetary disks: The synergy of multi-wavelength observations
- Systematic Multi-Epoch Monitoring of LkCa 15: Dynamic Dust Structures on Solar-System Scales
- The centimeter emission from planet-forming disks in Taurus
- Gap Opening and Inner Disk Structure in the Strongly Accreting Transition Disk of DM Tau
- Residual Gas & Dust Around Transition Objects and Weak T Tauri Stars
- Modeling of CO ro-vibrational line emission of HD 141569
- Interpretation of optical and IR light curves for transitional disk candidates in NGC 2264 using the extincted stellar radiation and the emission of optically thin dust inside the hole
- Evolution of the Accretion Rate of Young Intermediate Mass Stars: Implications for Disk Evolution and Planet Formation