The contribution of starspots to coronal structure
arXiv:1008.3613 · doi:10.1111/j.1365-2966.2010.17623.x
Abstract
Significant progress has been made recently in our understanding of the structure of stellar magnetic fields, thanks to advances in detection methods such as Zeeman-Doppler Imaging. The extrapolation of this surface magnetic field into the corona has provided 3D models of the coronal magnetic field and plasma. This method is sensitive mainly to the magnetic field in the bright regions of the stellar surface. The dark (spotted) regions are censored because the Zeeman signature there is suppressed. By modelling the magnetic field that might have been contained in these spots, we have studied the effect that this loss of information might have on our understanding of the coronal structure. As examples, we have chosen two stars (V374 peg and AB Dor) that have very different magnetograms and patterns of spot coverage. We find that the effect of the spot field depends not only on the relative amount of flux in the spots, but also its distribution across the stellar surface. For a star such as AB Dor with a high spot coverage and a large polar spot, at its greatest effect the spot field may almost double the fraction of the flux that is open (hence decreasing the spindown time) while at the same time increasing the X-ray emission measure by two orders of magnitude and significantly affecting the X-ray rotational modulation.
10 pages, 10 figures
References in corpus (3)
Cited by in corpus (20)
- Stellar magnetism: empirical trends with age and rotation
- The evolution of the solar wind
- Classical T Tauri stars: magnetic fields, coronae, and star-disc interactions
- Estimating magnetic filling factors from Zeeman-Doppler magnetograms
- Simulating the environment around planet-hosting stars - II. Stellar winds and inner astrospheres
- The magnetic field vector of the Sun-as-a-star
- Simulating the Environment Around Planet-Hosting Stars - I. Coronal Structure
- Trends in Ultracool Dwarf Magnetism. II. The Inverse Correlation Between X-ray Activity and Rotation as Evidence for a Bimodal Dynamo
- Activity and Magnetic Field Structure of the Sun-Like Planet Hosting Star HD 1237
- Estimating stellar wind parameters from low-resolution magnetograms
- The magnetic field vector of the Sun-as-a-star. II. Evolution of the large-scale vector field through activity cycle 24
- The Galactic cosmic ray intensity at the evolving Earth and young exoplanets
- Influence of the Sun-like magnetic cycle on exoplanetary atmospheric escape
- Connecting the large- and the small-scale magnetic fields of solar-like stars
- The effect of limited spatial resolution of stellar surface magnetic field maps on MHD wind and coronal X-ray emission models
- Starspots Modelling and Flare Analysis on Selected MV Stars
- Multiple views of magnetism in cool stars
- X-ray Evidence for a Pole-Dominated Corona on AB Dor
- Stellar Coronal and Wind Models: Impact on Exoplanets
- Asteroseismic Analysis of a Red Giant KIC 9145955 by Including the Small-scale Magnetic Fields in the Atmosphere