Exploring the Effects of Stellar Rotation and Wind Clearing: Debris Disks Around F Stars
arXiv:1208.6248 · doi:10.1088/0004-6256/144/5/135
Abstract
We have conducted a study of debris disks around F stars in order to explore correlations between rotation, stellar winds, and circumstellar disks. We obtained new 24 micron photometry from Spitzer's Multiband Imaging Photometer for Spitzer (MIPS) camera for a sample of 188 relatively nearby F dwarfs with various rotation rates and optical colors, and combined it with archival MIPS data for 66 more F stars, as well as Wide-field Infrared Survey Explorer (WISE) data for the entire sample, plus 9 more F stars. Based on the objects' K_s-[24] and [3.4]-[22] colors, we identify 22 stars in our sample as having 22 and/or 24 micron excesses above our detection limit, 13 of which are new discoveries. Our overall disk detection rate is 22/263, or 8%, consistent with previous determinations of disk fractions in the Solar neighborhood. While fast rotating stars are expected to have strong winds capable of efficiently removing dust, we find no correlation between rotational velocity and infrared excess. Similarly, we find no significant difference in excess detection rate between late-type F stars, which have convective surfaces, and early-type F stars, which have fully radiative envelopes. However, the essentially unknown range of ages in this sample may be washing out any effects relating rotation, winds, and disks.
Accepted to AJ
References in corpus (14)
- Debris Disk Evolution Around A Stars
- The Geneva-Copenhagen Survey of the Solar neighbourhood II. New uvby calibrations and rediscussion of stellar ages, the G dwarf problem, age-metallicity diagram, and heating mechanisms of the disk
- Debris disks around Sun-like stars
- Formation and Evolution of Planetary Systems (FEPS): Properties of Debris Dust around Solar-type Stars
- New Debris Disks Around Nearby Main Sequence Stars: Impact on The Direct Detection of Planets
- A Correlation Between Pre-Main Sequence Stellar Rotation Rates and IRAC Excesses in Orion
- Absolute Physical Calibration in the Infrared
- Spitzer/MIPS Observations of Stars in the Beta Pictoris Moving Group
- Evolution of Mid-IR Excess Around Sun-like Stars: Constraints on Models of Terrestrial Planet Formation
- First scattered light images of debris disks around HD 53143 and HD 139664
- The Formation and Evolution of Planetary Systems: Description of the Spitzer Legacy Science Database
- Spitzer observations of the Hyades: Circumstellar debris disks at 625 Myr of age
- The Incidence of Debris Disks at 24 μm and 670 Myr
- Mid-IR Observations of T Tauri stars: Probing the Star-Disk Connection in Rotational Evolution
Cited by in corpus (16)
- A survey of young, nearby, and dusty stars to understand the formation of wide-orbit giant planets
- A Comprehensive Census of Nearby Infrared Excess Stars
- A Sensitive Identification of Warm Debris Disks in the Solar Neighborhood Through Precise Calibration of Saturated WISE Photometry
- Rotation Periods, Inclinations, and Obliquities of Cool Stars Hosting Directly Imaged Substellar Companions: Spin-Orbit Misalignments are Common
- On Infrared Excesses Associated With Li-Rich K Giants
- The Hyades Cluster: Identification of a Planetary System and Escaping White Dwarfs
- Bright 22 m Excess Candidates from WISE All-Sky Catalog and Hipparcos Main Catalog
- Searching for IR excesses in Sun-like stars observed by WISE
- High-resolution spectroscopic analysis of a large sample of Li-rich giants found by LAMOST
- The Faintest WISE Debris Disks: Enhanced Methods for Detection and Verification
- Far-infrared and sub-millimetre imaging of HD~76582's circumstellar disk
- X-Shooter Survey of Young Intermediate Mass Stars -- I. Stellar Characterization and Disc Evolution
- Reaching the boundary between stellar kinematic groups and very wide binaries. IV. The widest Washington double star systems with rho > 1000 arcsec in Gaia DR3
- LAMOST/HRS Spectroscopic Analysis of Two New Li-rich Giants
- Young Stellar Object Candidates in IC 417
- Comprehensive Census and Complete Characterization of Nearby Debris Disk Stars