Debris Disk Evolution Around A Stars
arXiv:astro-ph/0608563 · doi:10.1086/508649
Abstract
We report 24 and/or 70 um measurements of ~160 A-type main-sequence stars using the Multiband Imaging Photometer for Spitzer (MIPS). Their ages range from 5 to 850 Myr based on estimates from the literature (cluster or moving group associations) or from the H-R diagram and isochrones. The thermal infrared excess is identified by comparing the deviation (~3% and ~15% at the 1-σlevel at 24 and 70 um, respectively) between the measurements and the synthetic Kurucz photospheric predictions. Stars showing excess infrared emission due to strong emission lines or extended nebulosity seen at 24 um are excluded from our sample; therefore, the remaining infrared excesses are likely to arise from circumstellar debris disks. At the 3-sigma confidence level, the excess rate at 24 and 70 um is 32% and >=33% (with an uncertainty of 5%), considerably higher than has been found for old solar analogs and M dwarfs. Our measurements place constraints on the fractional dust luminosities and temperatures in the disks. We find that older stars tend to have lower fractional dust luminosity than younger ones. While the fractional luminosity from the excess infrared emission follows a general 1/t relationship, the values at a given stellar age vary by at least two orders of magnitude. We also find that (1) older stars possess a narrow range of temperature distribution peaking at colder temperatures, and (2) the disk emission at 70 um persists longer than that at 24 um. Both results suggest that the debris-disk clearing process is more effective in the inner regions.
17 pages, accepted for publication in ApJ
References in corpus (2)
Cited by in corpus (26)
- Debris disks around Sun-like stars
- Variations on Debris Disks: Icy Planet Formation at 30-150 AU for 1-3 Solar Mass Main Sequence Stars
- Formation and Evolution of Planetary Systems (FEPS): Properties of Debris Dust around Solar-type Stars
- Long-Term Collisional Evolution of Debris Disks
- Abundant Circumstellar Silica Dust and SiO Gas Created by a Giant Hypervelocity Collision in the ~12 Myr HD172555 System
- Probing the Dust and Gas in the Transitional Disk of CS Cha with Spitzer
- Absolute Physical Calibration in the Infrared
- Spitzer/MIPS Observations of Stars in the Beta Pictoris Moving Group
- The Rise and Fall of Debris Disks: MIPS Observations of h and chi Persei and the Evolution of Mid-IR Emission from Planet Formation
- Collisional and Thermal Emission Models of Debris Disks: Towards Planetesimal Population Properties
- On the Relationship Between Debris Disks and Planets
- A near-infrared interferometric survey of debris disc stars. II. CHARA/FLUOR observations of six early-type dwarfs
- Debris Disks in NGC 2547
- Long-wavelength observations of debris discs around sun-like stars
- Spitzer observations of the Hyades: Circumstellar debris disks at 625 Myr of age
- A Spitzer Study of Debris Disks In The Young Nearby Cluster NGC 2232: Icy Planets Are Common Around ~ 1.5--3 Solar-Mass Stars
- An Unbiased Survey of 500 Nearby Stars for Debris Disks: A JCMT Legacy Program
- Modeling the Infrared Bow Shock at delta Velorum: Implications for Studies of Debris Disks and lambda Bootis Stars
- Planetary systems around close binary stars: the case of the very dusty, Sun-like, spectroscopic binary BD+20 307
- The Exceptionally Large Debris Disk around γOphiuchi
- Spitzer-MIPS Observations of the eta Cha Young Association
- Spectroscopic metallicities of Vega-like stars
- Terrestrial Zone Debris Disk Candidates in h and chi Persei
- A sub-AU outwardly truncated accretion disk around a classical T Tauri star
- The Frequency of Warm Debris Disks and Transition Disks in a Complete Sample of Intermediate-Mass GLIMPSE Stars: Placing Constraints on Disk Lifetimes
- On the Solar System-Debris Disk Connecction