Spitzer Far-Infrared Detections of Cold Circumstellar Disks
arXiv:astro-ph/0605334 · doi:10.1086/505749
Abstract
Observations at 70 microns with the Spitzer Space Telescope have detected several stellar systems within 65 pc of the Sun. Of 18 presumably young systems detected in this study, as many as 15 have 70-micron emission in excess of that expected from their stellar photospheres. Five of the systems with excesses are members of the Tucanae Association. The 70-micron excesses range from a factor of ~2 to nearly 30 times the expected photospheric emission from these stars. In contrast to the 70-micron properties of these systems, there is evidence for an emission excess at 24 microns for only HD 3003, confirming previous results for this star. The lack of a strong 24-micron excess in most of these systems suggests that the circumstellar dust producing the IR excesses is relatively cool (T_dust < 150 K) and that there is little IR-emitting material within the inner few AU of the primary stars. Many of these systems lie close enough to Earth that the distribution of the dust producing the IR excesses might be imaged in scattered light at optical and near-IR wavelengths.
Accepted for publication in The Astrophysical Journal Letters; 5 pages, 2 tables, 2 figures
Cited by in corpus (12)
- The Complete Census of 70-um-Bright Debris Disks within the FEPS (Formation and Evolution of Planetary Systems) Spitzer Legacy Survey of Sun-like Stars
- Spitzer/MIPS Observations of Stars in the Beta Pictoris Moving Group
- A Sensitive Identification of Warm Debris Disks in the Solar Neighborhood Through Precise Calibration of Saturated WISE Photometry
- Spitzer 24 micron Survey of Debris Disks in the Pleiades
- Mass and Temperature of the TWA 7 Debris Disk
- An Unbiased Survey of 500 Nearby Stars for Debris Disks: A JCMT Legacy Program
- A Possible Icy Kuiper Belt around HD 181327
- EF Cha: Warm Dust Orbiting a Nearby 10 Myr Old Star
- Probing the Terrestrial Regions of Planetary Systems: Warm Debris Disks with Emission Features
- Emerging trends in metallicity and lithium properties of debris disc stars
- Herschel Observations of Disks around Late-type Stars
- A catalog of collected debris disks: properties, classifications and correlations between disks and stars/planets