Evolution from protoplanetary to debris discs: The transition disc around HD 166191
arXiv:1312.4531 · doi:10.1093/mnras/stt2435
Abstract
HD 166191 has been identified by several studies as hosting a rare and extremely bright warm debris disc with an additional outer cool disc component. However, an alternative interpretation is that the star hosts a disc that is currently in transition between a full gas disc and a largely gas-free debris disc. With the help of new optical to mid-IR spectra and Herschel imaging, we argue that the latter interpretation is supported in several ways: i) we show that HD 166191 is co-moving with the ~4 Myr-old Herbig Ae star HD 163296, suggesting that the two have the same age, ii) the disc spectrum of HD 166191 is well matched by a standard radiative transfer model of a gaseous protoplanetary disc with an inner hole, and iii) the HD 166191 mid-IR silicate feature is more consistent with similarly primordial objects. We note some potential issues with the debris disc interpretation that should be considered for such extreme objects, whose lifetime at the current brightness is mush shorter than the stellar age, or in the case of the outer component requires a mass comparable to the solid component of the Solar nebula. These aspects individually and collectively argue that HD 166191 is a 4-5 Myr old star that hosts a gaseous transition disc. Though it does not argue in favour of either scenario, we find strong evidence for 3-5 um disc variability. We place HD 166191 in context with discs at different evolutionary stages, showing that it is a potentially important object for understanding the protoplanetary to debris disc transition.
accepted to MNRAS, fixed typos in abstract and axis label
References in corpus (17)
- The XMM-Newton Serendipitous Survey. V. The Second XMM-Newton Serendipitous Source Catalogue
- Photoevaporation of protoplanetary discs II: evolutionary models and observable properties
- Monte Carlo radiative transfer in protoplanetary disks
- Transience of hot dust around sun-like stars
- Pulkovo Compilation of Radial Velocities for 35495 Hipparcos Stars in a Common System
- Spitzer IRS Spectroscopy of IRAS-Discovered Debris Disks
- HST/ACS Multiband Coronagraphic Imaging of the Debris Disk around Beta Pictoris
- Formation and Evolution of Planetary Systems (FEPS): Properties of Debris Dust around Solar-type Stars
- Steady-State Size Distributions for Collisional Populations: Analytical Solution with Size-Dependent Strength
- High-Resolution Spectroscopy in Tr37: Gas Accretion Evolution in Evolved Dusty Disks
- The Rise and Fall of Debris Disks: MIPS Observations of h and chi Persei and the Evolution of Mid-IR Emission from Planet Formation
- 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
- HD 98800: A 10-Myr-Old Transition Disk
- Circumstellar Dust Created by Terrestrial Planet Formation in HD 113766
- Variability of the Infrared Excess of Extreme Debris Disks
- The T Tauri star RY Tau as a case study of the inner regions of circumstellar dust disks
- Albedos of Small Jovian Trojans
Cited by in corpus (15)
- Do Two Temperature Debris Disks Have Multiple Belts?
- Five steps in the evolution from protoplanetary to debris disk
- A Comprehensive Census of Nearby Infrared Excess Stars
- The hybrid disks: a search and study to better understand evolution of disks
- Tracing planet-induced structures in circumstellar disks using molecular lines
- The transiting dust clumps in the evolved disk of the Sun-like UXor RZ Psc
- Warm Dusty Debris Disks and Distant Companion Stars: V488 Per and 2M1337
- HD 145263: Spectral Observations of Silica Debris Disk Formation via Extreme Space Weathering?
- A Star-sized Impact-Produced Dust Clump in the Terrestrial Zone of the HD 166191 System
- Faint warm debris disks around nearby bright stars explored by AKARI and IRSF
- A Herschel resolved debris disc around HD 105211
- Abundant sub-micron grains revealed in newly discovered extreme debris discs
- Discovery of carbon monoxide emission from five debris disks around young A-type stars
- Glancing through the debris disk: Photometric analysis of DE Boo with CHEOPS
- The nature of ASASSN-24fw's occultation: modelling the event as dimming by optically thick rings around a sub-stellar companion