Formation and Evolution of Planetary Systems (FEPS): Properties of Debris Dust around Solar-type Stars
arXiv:0810.1003 · doi:10.1088/0067-0049/181/1/197
Abstract
We present Spitzer photometric (IRAC and MIPS) and spectroscopic (IRS low resolution) observations for 314 stars in the Formation and Evolution of Planetary Systems (FEPS) Legacy program. These data are used to investigate the properties and evolution of circumstellar dust around solar-type stars spanning ages from approximately 3 Myr to 3 Gyr. We identify 46 sources that exhibit excess infrared emission above the stellar photosphere at 24um, and 21 sources with excesses at 70um. Five sources with an infrared excess have characteristics of optically thick primordial disks, while the remaining sources have properties akin to debris systems. The fraction of systems exhibiting a 24um excess greater than 10.2% above the photosphere is 15% for ages < 300 Myr and declines to 2.7% for older ages. The upper envelope to the 70um fractional luminosity appears to decline over a similar age range. The characteristic temperature of the debris inferred from the IRS spectra range between 60 and 180 K, with evidence for the presence of cooler dust to account for the strength of the 70um excess emission. No strong correlation is found between dust temperature and stellar age. Comparison of the observational data with disk models containing a power-law distribution of silicate grains suggest that the typical inner disk radius is > 10 AU. Although the interpretation is not unique, the lack of excess emission shortwards of 16um and the relatively flat distribution of the 24um excess for ages <300~Myr is consistent with steady-state collisional models.
85 pages, 18 figures, 4 tables; accepted for publication in ApJS
References in corpus (11)
- Improved Age Estimation for Solar-Type Dwarfs Using Activity-Rotation Diagnostics
- Debris Disk Evolution Around A Stars
- Transience of hot dust around sun-like stars
- Debris disks around Sun-like stars
- New Debris Disks Around Nearby Main Sequence Stars: Impact on The Direct Detection of Planets
- Spitzer 24 Micron Observations of Open Cluster IC 2391 and Debris Disk Evolution of FGK Stars
- The Dust Properties of Eight Debris Disk Candidates as Determined by Submillimeter Photometry
- The Formation and Evolution of Planetary Systems: Description of the Spitzer Legacy Science Database
- Debris Disks in NGC 2547
- A Spitzer Study of Debris Disks In The Young Nearby Cluster NGC 2232: Icy Planets Are Common Around ~ 1.5--3 Solar-Mass Stars
- On the nature of clumps in debris disks