Polar branches of stellar activity waves: dynamo models and observations
arXiv:1105.1034 · doi:10.1051/0004-6361/201015949
Abstract
[Abridged abstract:] Stellar activity data provide evidence of activity wave branches propagating polewards rather than equatorwards (the solar case). Stellar dynamo theory allows polewards propagating dynamo waves for certain governing parameters. We try to unite observations and theory, restricting our investigation to the simplest mean-field dynamo models. We suggest a crude preliminary systematization of the reported cases of polar activity branches. Then we present results of dynamo model simulations which contain magnetic structures with polar dynamo waves, and identify the models which look most promising for explaining the latitudinal distribution of spots in dwarf stars. Those models require specific features of stellar rotation laws, and so observations of polar activity branches may constrain internal stellar rotation. Specifically, we find it unlikely that a pronounced poleward branch can be associated with a solar-like internal rotation profile, while it can be more readily reproduced in the case of a cylindrical rotation law appropriate for fast rotators. We stress the case of the subgiant component of the active close binary HR 1099 which, being best investigated, presents the most severe problems for a dynamo interpretation. Our best model requires dynamo action in two layers separated in radius. Observations of polar activity branches provide valuable information for understanding stellar activity mechanisms and internal rotation, and thus deserve intensive observational and theoretical investigation. Current stellar dynamo theory seems sufficiently robust to accommodate the phenomenology.
13 pages, 10 figures, 4 tables, accepted by Astronomy and Astrophysics
References in corpus (11)
- The case for a distributed solar dynamo shaped by near-surface shear
- Alpha effect and turbulent diffusion from convection
- Nonlinear current helicity fluxes in turbulent dynamos and alpha quenching
- Astrophysical Fluid Dynamics via Direct Statistical Simulation
- Magnetic activity on AB Doradus: Temporal evolution of starspots and differential rotation from 1988 to 1994
- Magnetic flux transport on active cool stars and starspot lifetimes
- Butterfly Diagram and Activity Cycles in HR 1099
- The impact of meridional circulation on stellar butterfly diagrams and polar caps
- Advances in theory and simulations of large-scale dynamos
- Study of isotopic fractions and abundances of the neutron-capture elements in HD 175305
- Turbulent transport in hydromagnetic flows
Cited by in corpus (8)
- Revisiting the transits of CoRoT-7b at a lower activity level
- Measuring stellar differential rotation with high-precision space-borne photometry
- Current helicity of active regions as a tracer of large-scale solar magnetic helicity
- Activity time series of old stars from late F to early K. I. Simulating radial velocity, astrometry, photometry, and chromospheric emission
- Wavelet analysis of the long-term activity of V833 Tau
- Resonances for activity waves in spherical mean field dynamos
- Simulations of starspot anomalies within TESS exoplanetary transit light curves -- II
- Current state of the modelling of photospheric activity