Structured Red Giant Winds with Magnetized Hot Bubbles and the Corona/Cool Wind Dividing Line
arXiv:astro-ph/0608195 · doi:10.1086/512600
Abstract
By performing MHD simulations, we investigate the mass loss of intermediate- and low-mass stars from main sequence (MS) to red giant branch (RGB) phases. Alfven waves, which are excited by the surface convections travel outwardly and dissipate by nonlinear processes to accelerate and heat the stellar winds. We dynamically treat these processes in open magnetic field regions from the photospheres to 25 stellar radii. When the stars evolve to slightly blueward positions of the dividing line (Linsky & Haisch), the steady hot corona with temperature, ~ 1MK, suddenly disappears. Instead, many hot (~1MK) and warm (~10^5K) bubbles are formed in cool (T<~2x10^4K) chromospheric winds because of thermal instability; the red giant wind is not a steady stream but structured outflow. As a result, the mass loss rates, \dot{M}, largely vary in time by 3-4 orders or magnitude in the RGB stars. Supported by magnetic pressure, the density of hot bubbles can be kept low to reduce the radiative cooling and to maintain the high temperature long time. Even in the stars redward of the dividing line, hot bubbles intermittently exist, and they can be sources of UV/soft X-ray emissions from hybrid stars. Nearly static regions are formed above the photospheres of the RGB stars, and the stellar winds are effectively accelerated from several stellar radii. Then, the wind velocity is much smaller than the surface escape speed, because it is regulated by the slower escape speed at that location. We finally derive an equation that determines \dot{M} from the energetics of the simulated wave-driven winds in a forward manner. The relation explains \dot{M} from MS to RGB, and it can play a complementary role to the Reimers' formula, which is mainly for more luminous stars.
19 pages, 15 figures embedded (emulate ApJ style), submitted to ApJ, mpeg movie is available at http://www.esa.c.u-tokyo.ac.jp/~stakeru/research/st633.mpg
References in corpus (2)
Cited by in corpus (51)
- 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
- Disk Winds Driven by Magnetorotational Instability and Dispersal of Proto-Planetary Disks
- Accretion-Powered Stellar Winds II: Numerical Solutions for Stellar Wind Torques
- The Properties of the Solar Corona and Its Connection to the Solar Wind
- Imaging the dynamical atmosphere of the red supergiant Betelgeuse in the CO first overtone lines with VLTI/AMBER
- Turbulence-driven Polar Winds from T Tauri Stars Energized by Magnetospheric Accretion
- Spatially resolving the inhomogeneous structure of the dynamical atmosphere of Betelgeuse with VLTI/AMBER
- Testing Models of Accretion-driven Coronal Heating and Stellar Wind Acceleration for T Tauri Stars
- Spin Evolution of Accreting Young Stars. II. Effect of Accretion-Powered Stellar Winds
- Saturation of Stellar Winds from Young Suns
- Low Mass X-ray Binaries: The Effects of the Magnetic Braking Prescription
- Three-dimensional Numerical Simulations of Magnetized Winds of Solar-Like Stars
- Cool luminous stars: the hybrid nature of their infrared spectra -- Carbon, oxygen, and their isotopic abundances in 23 K - M giant stars
- Winds from Luminous Late-Type Stars: II. Broadband Frequency Distribution of Alfvén Waves
- Basal Chromospheric Flux and Maunder Minimum-type Stars: The quiet-Sun Chromosphere as a Universal Phenomenon
- The Basal Chromospheric Mg II h+k Flux of Evolved Stars: Probing the Energy Dissipation of Giant Chromospheres
- A Signature of Chromospheric Activity in Brown Dwarfs Revealed by 2.5-5.0 Micron AKARI Spectra
- The Morphology of IRC +10420's Circumstellar Ejecta
- Atmospheric escape by magnetically driven wind from gaseous planets
- Alfvén-wave driven magnetic rotator winds from low-mass stars I: rotation dependences of magnetic braking and mass-loss rate
- Stellar Winds and Coronae of Low-mass Pop. II/III Stars
- Alfven Wave-Driven Supernova Explosion
- Radio Stars: from kHz to THz
- Hubble Space Telescope Constraints on the Winds and Astrospheres of Red Giant Stars
- Lambda And: A post-main sequence wind from a solar-mass star
- Polarization in microlensing towards the Galactic bulge
- Radio Emission from Red-Giant Hot Jupiters
- Radiative levitation in carbon-enhanced metal-poor stars with s-process enrichment
- Spatially resolving the outer atmosphere of the M giant BK Vir in the CO first overtone lines with VLTI/AMBER
- Spatially resolved, high-spectral resolution observation of the K giant Aldebaran in the CO first overtone lines with VLTI/AMBER
- Hot Grain Dynamics by Electric Charging and Magnetic Trapping in Debris Disks
- Mass transfer and magnetic braking in Sco X-1
- Radio Emissions from Substellar Companions of Evolved Cool Stars
- Alfvén wave-driven wind from RGB and AGB stars
- Self-consistent Simulations of Alfven Wave Driven Winds from the Sun and Stars
- The K giant star Arcturus: the hybrid nature of its infrared spectrum
- GHRS Observations of Cool, Low-Gravity Stars. VI Mass-Loss Rates and Wind Parameters for M Giants
- Evolution of solar-type stellar wind
- Attenuation of super-soft X-ray sources by circumstellar material
- Thermal Response of A Solar-like Atmosphere to An Electron Beam from A Hot Jupiter: A Numerical Experiment
- Multi-wavelength Radio Continuum Emission Studies of Dust-free Red Giants
- Spatially resolving the thermally inhomogeneous outer atmosphere of the red giant Arcturus in the 2.3 micron CO lines
- Compact Objects in close orbits as Gravitational Wave Sources: Formation Scenarios and Properties
- A CO-multilayer outer atmosphere for eight evolved stars revealed with VLTI/AMBER
- Constraining stellar parameters and atmospheric dynamics of the carbon AGB star V Oph
- Solar Wind and its Evolution
- A Model for the Chromosphere/Wind of 31 Cygni and its Implications for Single Stars
- Atmospheric Escape by Magnetically Driven Wind from Gaseous Planets II --Effects of Magnetic Diffusion--
- Atmospheric Heating and Wind Acceleration: Results for Cool Evolved Stars based on Proposed Processes
- Evolution of Alfven wave-driven solar winds to red giants