Doppler images and the underlying dynamo. The case of AF Leporis
arXiv:1412.2892 · doi:10.1051/0004-6361/201424229
Abstract
The (Zeeman-)Doppler imaging studies of solar-type stars very often reveal large high-latitude spots. This also includes F stars that possess relatively shallow convection zones, indicating that the dynamo operating in these stars differs from the solar dynamo. We aim to determine whether mean-field dynamo models of late-F type dwarf stars can reproduce the surface features recovered in Doppler maps. In particular, we wish to test whether the models can reproduce the high-latitude spots observed on some F dwarfs. The photometric inversions and the surface temperature maps of AF Lep were obtained using the Occamian-approach inversion technique. Low signal-to-noise spectroscopic data were improved by applying the least-squares deconvolution method. The locations of strong magnetic flux in the stellar tachocline as well as the surface fields obtained from mean-field dynamo solutions were compared with the observed surface temperature maps. The photometric record of AF Lep reveals both long- and short-term variability. However, the current data set is too short for cycle-length estimates. From the photometry, we have determined the rotation period of the star to be 0.9660+-0.0023 days. The surface temperature maps show a dominant, but evolving, high-latitude (around +65 degrees) spot. Detailed study of the photometry reveals that sometimes the spot coverage varies only marginally over a long time, and at other times it varies rapidly. Of a suite of dynamo models, the model with a radiative interior rotating as fast as the convection zone at the equator delivered the highest compatibility with the obtained Doppler images.
accepted for publication in Astronomy & Astrophysics
References in corpus (12)
- Modules for Experiments in Stellar Astrophysics (MESA)
- On the age of the Pictoris moving group
- Magnetic cycles of the planet-hosting star tauBootis
- High-Dispersion Optical Spectra of Nearby Stars Younger Than The Sun
- Lithium Depletion of Nearby Young Stellar Associations
- The magnetic field of the planet-hosting star Bootis
- On the kinematic evolution of young local associations and the Sco-Cen complex
- Estimating stellar rotation from starspot detection during planetary transits
- The Magnetic Topology of the Weak-Lined T Tauri Star V410 - A Simultaneous Temperature and Magnetic Field Inversion
- Magnetic activity on AB Doradus: Temporal evolution of starspots and differential rotation from 1988 to 1994
- Doppler imaging of the young late-type star LO Pegasi (BD +22 4409) in September 2003
- Magnetic activity, differential rotation and dynamo action in the pulsating F9IV star KIC 5955122
Cited by in corpus (6)
- AF Lep b: the lowest mass planet detected coupling astrometric and direct imaging data
- Direct imaging discovery of a super-Jovian around the young Sun-like star AF Leporis
- The beta Pictoris association: Catalog of photometric rotational periods of low-mass members and candidate members
- Recurrent starspot activity and differential rotation in KIC 11560447
- Doppler imaging and differential rotation of Coronae Borealis using SONG
- Spectropolarimetry of stars across the H-R diagram