Evolution of solar-type stellar wind
arXiv:1301.2359 · doi:10.1002/asna.201211751
Abstract
By extending our self-consistent MHD simulations for the solar wind, we study the evolution of stellar winds of solar-type stars from early main sequence stage to red giant phase. Young solar-type stars are active and the mass loss rates are larger by up to ~ 100 times than that of the present-day sun. We investigate how the stellar wind is affected when the magnetic field strength and fluctuation amplitude at the photosphere increase. While the mass loss rate sensitively depends on the input energy from the surface because of the global instability related to the reflection and nonlinear dissipation of Alfven waves, it saturates at ~ 100 times because most of the energy is used up for the radiative losses rather than the kinetic energy of the wind. After the end of the main sequence phase when the stellar radius expands by ~ 10 times, the steady hot corona with temperature K, suddenly disappears. Chromospheric materials, with hot bubbles embedded owing to thermal instability, directly stream out; the red giant wind is not a steady stream but structured outflow.
4 pages, Astronomische Nachrichten in press, based on a talk in "Cool Stars 17" in Barcelona, Jun 2012
References in corpus (4)
- Self-consistent Coronal Heating and Solar Wind Acceleration from Anisotropic Magnetohydrodynamic Turbulence
- Testing a Predictive Theoretical Model for the Mass Loss Rates of Cool Stars
- Magnetic Landscape of Sun's Polar Region
- Connecting the Sun and the Solar Wind: The First 2.5 Dimensional Self-consistent MHD Simulation under the Alfvén Wave Scenario
Cited by in corpus (6)
- New Observational Constraints on the Winds of M Dwarf Stars
- Damping of Alfven waves by Turbulence and its Consequences: from Cosmic-Rays Streaming to Launching Winds
- Age dependence of wind properties for solar type stars: a 3d study
- MHD study of extreme space weather conditions for exoplanets with Earth-like magnetospheres: On habitability conditions and radio-emission
- MHD simulations of the space weather in Proxima b: Habitability conditions and radio emission
- Testing the Rossby Paradigm: Weakened Magnetic Braking in early K-type Stars