Long-term magnetic field monitoring of the Sun-like star ξBootis A
arXiv:1109.5066 · doi:10.1051/0004-6361/201118139
Abstract
Aims. We aim to investigate the long-term temporal evolution of the magnetic field of the solar-type star ξBootis A, both from direct magnetic field measurements and from the simultaneous estimate of indirect activity indicators. Methods. We obtained seven epochs of high-resolution, circularly-polarized spectra from the NARVAL spectropolarimeter between 2007 and 2011, for a total of 76 spectra. Using approximately 6,100 photospheric spectral lines covering the visible domain, we employed a cross-correlation procedure to compute a mean polarized line profile from each spectrum. The large-scale photospheric magnetic field of the star was then modelled by means of Zeeman-Doppler Imaging, allowing us to follow the year-to-year evolution of the reconstructed magnetic topology. Simultaneously, we monitored the width of several magnetically sensitive spectral lines, the radial velocity, the line asymmetry of intensity line profiles, and the chromospheric emission in the cores of the Ca II H and Halpha lines. Results. During the highest observed activity states, in 2007 and 2011, the large-scale field of ξBoo A is almost completely axisymmetric and is dominated by its toroidal component. The magnetic topologies reconstructed for these activity maxima are very similar, suggesting a form of short cyclicity in the large-scale field distribution. Correlated temporal evolution, due to both rotational modulation and seasonal variability, is observed between the Ca II emission, the Halpha emission and the width of magnetically sensitive lines. When measurable, the differential rotation reveals a strong latitudinal shear in excess of 0.2 rad/d.
16 pages, 8 figures, accepted for publication in A&A, abstract shortened to respect the 1920 characters required
References in corpus (13)
- The surprising magnetic topology of tauSco: fossil remnant or dynamo output?
- Simulations of dynamo action in fully convective stars
- Toroidal versus poloidal magnetic fields in Sun-like stars: a rotation threshold
- Patterns of photometric and chromospheric variation among Sun-like stars: A 20-year perspective
- Persistent Magnetic Wreaths in a Rapidly Rotating Sun
- Magnetic Cycles in a Convective Dynamo Simulation of a Young Solar-type Star
- Simulations of core convection in rotating A-type stars: Magnetic dynamo action
- Rapidly Rotating Suns and Active Nests of Convection
- Discovery of a 1.6-year Magnetic Activity Cycle in the Exoplanet Host Star iota Horologii
- Spectropolarimetric observations of the transiting planetary system of the K dwarf HD 189733
- Simulations of turbulent convection in rotating young solar-like stars: Differential rotation and meridional circulation
- Direct observation of magnetic cycles in Sun-like stars
- Magnetic fields and differential rotation on the pre-main sequence I: The early-G star HD 141943 - brightness and magnetic topologies
Cited by in corpus (57)
- Stellar magnetism: empirical trends with age and rotation
- A Bcool magnetic snapshot survey of solar-type stars
- The evolution of surface magnetic fields in young solar-type stars I: the first 250 Myr
- Suppression of Coronal Mass Ejections in active stars by an overlying large-scale magnetic field: A numerical study
- Magnetic Wreaths and Cycles in Convective Dynamos
- The evolution of surface magnetic fields in young solar-type stars II: The early main sequence (250-650 Myr)
- The Magnetic Fields at the Surface of Active Single G-K Giants
- Magnetic cycles at different ages of stars
- Buoyant Magnetic Loops Generated by Global Convective Dynamo Action
- Estimating magnetic filling factors from Zeeman-Doppler magnetograms
- A solar-like magnetic cycle on the mature K-dwarf 61 Cyg A (HD 201091)
- The energy budget of stellar magnetic fields
- Hidden magnetic fields of young suns
- The Evolving Magnetic Topology of Boötis
- Magnetic fields on young, moderately rotating Sun-like stars - I: HD~35296 and HD~29615
- Variable magnetic field geometry of the young sun HN Peg (HD 206860)
- The magnetic field vector of the Sun-as-a-star
- Detection of ultra-weak magnetic fields in Am stars: beta UMa and theta Leo
- Do non-dipolar magnetic fields contribute to spin-down torques?
- Magnetic fields on young, moderately rotating Sun-like stars II. EK Draconis (HD 129333)
- Direct evidence of a full dipole flip during the magnetic cycle of a sun-like star
- The Effect of Magnetic Variability on Stellar Angular Momentum Loss I: The Solar Wind Torque During Sunspot Cycles 23 & 24
- Could a change in magnetic field geometry cause the break in the wind-activity relation?
- Simulating the Environment Around Planet-Hosting Stars - I. Coronal Structure
- The Effect of Combined Magnetic Geometries on Thermally Driven Winds I: Interaction of Dipolar and Quadrupolar Fields
- Tuning the Exo-Space Weather Radio for Stellar Coronal Mass Ejections
- Activity and Magnetic Field Structure of the Sun-Like Planet Hosting Star HD 1237
- The intrinsic and interstellar broadband linear polarization of nearby FGK dwarfs
- Discovery of starspots on Vega - First spectroscopic detection of surface structures on a normal A-type star
- A dominant magnetic dipole for the evolved Ap star candidate EK Eridani
- A spectro-polarimetric study of the planet-hosting G dwarf, HD 147513
- The magnetic field vector of the Sun-as-a-star. II. Evolution of the large-scale vector field through activity cycle 24
- Latitudinal differential rotation in the solar analogues 16 Cyg A and B
- Magnetic geometry and surface differential rotation of the bright Am star Alhena A
- Magnetic field structure in single late-type giants: Beta Ceti in 2010 - 2012
- Mitigating stellar activity jitter with different line lists for least-squares deconvolution: analysis of a parametric and a randomised line selection
- The Rotationally Modulated Polarization of Boo A
- The Effect of Magnetic Variability on Stellar Angular Momentum Loss II: The Sun, 61 Cygni A, Eridani, Bootis A and Bootis A
- Observing dynamos in cool stars
- Measuring stellar magnetic helicity density
- A BCool survey of stellar magnetic cycles
- Zeeman Doppler Imaging of ksi Boo A and B
- Far beyond the Sun: II. Probing the stellar magnetism of the young Sun ι Horologii from the photosphere to its corona
- Magnetic field structure in single late-type giants: The weak G-band giant 37 Comae from 2008 to 2011
- Assessing the capability of a model-based stellar XUV estimation
- The multi-planet system TOI-421 -- A warm Neptune and a super puffy mini-Neptune transiting a G9 V star in a visual binary
- 14 Ceti: A probable Ap-star-descendant entering the Hertzsprung gap
- A Study of the Magnetic Activity and Variability of GJ 436
- Stellar Coronal and Wind Models: Impact on Exoplanets
- Multicomponent Activity Cycles using Hilbert-Huang Analysis
- On the lithium abundance of the visual binary components Boo A (G8V) and Boo B (K5V)
- Far beyond the Sun: III. The magnetic cycle of Horologii
- Spectrum variability of the active solar-type star Xi Bootis A
- (Simulating) Coronal Mass Ejections in Active Stars
- The impact of faculae on the radius determination of exoplanets: The case of the M-star GJ1214
- Coronal Mass Ejections and Exoplanets: A Numerical Perspective
- Zeeman Doppler Imaging of Ceti: The Weakest Magnetic Field Detected in a Sun-like Star