Warm dust in the terrestrial planet zone of a sun-like Pleiad: collisions between planetary embryos?
arXiv:0711.2111 · doi:10.1086/524935
Abstract
Only a few solar-type main sequence stars are known to be orbited by warm dust particles; the most extreme is the G0 field star BD+20 307 that emits ~4% of its energy at mid-infrared wavelengths. We report the identification of a similarly dusty star HD 23514, an F6-type member of the Pleiades cluster. A strong mid-IR silicate emission feature indicates the presence of small warm dust particles, but with the primary flux density peak at the non-standard wavelength of ~9 micron. The existence of so much dust within an AU or so of these stars is not easily accounted for given the very brief lifetime in orbit of small particles. The apparent absence of very hot (>~1000 K) dust at both stars suggests the possible presence of a planet closer to the stars than the dust. The observed frequency of the BD+20 307/HD 23514 phenomenon indicates that the mass equivalent of Earth's Moon must be converted, via collisions of massive bodies, to tiny dust particles that find their way to the terrestrial planet zone during the first few hundred million years of the life of many (most?) sun-like stars. Identification of these two dusty systems among youthful nearby solar-type stars suggests that terrestrial planet formation is common.
ApJ in press, 19 pages including 3 figures and 2 tables, minor changes to the tables and figures
References in corpus (7)
- Transience of hot dust around sun-like stars
- Spitzer IRS Spectroscopy of IRAS-Discovered Debris Disks
- Externally-polluted white dwarfs with dust disks
- Near and Mid-IR Photometry of the Pleiades, and a New List of Substellar Candidate Members
- On the Nature of the Dust in the Debris Disk Around HD69830
- IRS Spectra of Solar-Type Stars: \break A Search for Asteroid Belt Analogs
- EF Cha: Warm Dust Orbiting a Nearby 10 Myr Old Star
Cited by in corpus (9)
- 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
- Abundant Circumstellar Silica Dust and SiO Gas Created by a Giant Hypervelocity Collision in the ~12 Myr HD172555 System
- Six White Dwarfs with Circumstellar Silicates
- X-ray and Infrared Observations of Two Externally-Polluted White Dwarfs
- A Spitzer Study of Debris Disks In The Young Nearby Cluster NGC 2232: Icy Planets Are Common Around ~ 1.5--3 Solar-Mass Stars
- Planetary systems around close binary stars: the case of the very dusty, Sun-like, spectroscopic binary BD+20 307
- Properties of protostars in the Elephant Trunk globule IC 1396A
- The discovery of new warm debris disks around F-type stars