Anti-solar differential rotation on the active sub-giant HU Virginis
arXiv:1606.05497 · doi:10.1051/0004-6361/201628642
Abstract
Measuring surface differential rotation (DR) on different types of stars is important when characterizing the underlying stellar dynamo. It has been suggested that anti-solar DR laws can occur when strong meridional flows exist. We aim to investigate the differential surface rotation on the primary star of the RS CVn binary HU Vir by tracking its starspot distribution as a function of time. We also aim to recompute and update the values for several system parameters of the triple system HU Vir (close and wide orbits). Time-series high-resolution spectroscopy for four continuous months was obtained with the 1.2-m robotic STELLA telescope. Nine consecutive Doppler images were reconstructed from these data, using our line-profile inversion code iMap. An image cross-correlation method was applied to derive the surface differential-rotation law for HU Vir. New orbital elements for the close and the wide orbits were computed using our new STELLA radial velocities (RVs) combined with the RV data available in the literature. Photometric observations were performed with the Amadeus Automatic Photoelectric Telescope (APT), providing contemporaneous Johnson-Cousins and data for approximately 20 years. This data was used to determine the stellar rotation period and the active longitudes. We confirm anti-solar DR with a surface shear parameter of -0.029 0.005 and -0.026 0.009, using single-term and double-term differential rotation laws, respectively. The best fit is achieved assuming a solar-like double-term law with a lap time of 400 d. Our orbital solutions result in a period of 10.387678 0.000003 days for the close orbit and 2726 7 d ( 7.5 yr) for the wide orbit. A Lomb-Scarge (L-S) periodogram of the pre-whitened -band data reveals a strong single peak providing a rotation period of 10.391 0.008 d.
Accepted for publication in A&A
References in corpus (9)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Reynolds stress and heat flux in spherical shell convection
- The Magnetic Topology of the Weak-Lined T Tauri Star V410 - A Simultaneous Temperature and Magnetic Field Inversion
- Spot evolution on the red giant star XX Triangulum. A starspot-decay analysis based on time-series Doppler imaging
- A fast method for Stokes profile synthesis -- Radiative transfer modeling for ZDI and Stokes profile inversion
- Zeeman-Doppler Imaging of Late-Type Stars -- The Surface Magnetic Field of II Peg
- A method to discriminate solar and antisolar differential rotation in high-precision light curves
- Antisolar differential rotation of the K1-giant sigma Geminorum revisited
- Time-series Doppler imaging of the red giant HD 208472. Active longitudes and differential rotation
Cited by in corpus (13)
- BRITE-Constellation high-precision time-dependent photometry of the early-O-type supergiant Puppis unveils the photospheric drivers of its small- and large-scale wind structures
- Rotation--differential rotation relationships for late-type single and binary stars from Doppler imaging
- Waldmeier Effect in Stellar Cycles
- Stellar Dynamos with Solar and Anti-solar Differential Rotations: Implications to Magnetic Cycles of Slowly Rotating Stars
- Time-series Doppler imaging of the red giant HD 208472. Active longitudes and differential rotation
- Solar-like to Antisolar Differential Rotation: A Geometric Interpretation
- Antisolar differential rotation with surface lithium enrichment on the single K-giant V1192 Orionis
- Hunting for anti-solar differentially rotating stars using the Rossby number -- An application to the Kepler field
- Impact of anti-solar differential rotation in mean-field solar-type dynamos -- Exploring possible magnetic cycles in slowly rotating stars
- The first Doppler imaging of the active binary prototype RS Canum Venaticorum
- EI Eridani: a star under the influence -- The effect of magnetic activity in the short and long term
- Doppler imaging and differential rotation of Coronae Borealis using SONG
- Observing the changing surface structures of the active K giant sigma Gem with SONG