Simulations of Winds of Weak-Lined T Tauri Stars: The Magnetic Field Geometry and The Influence of the Wind on Giant Planet Migration
arXiv:0908.2573 · doi:10.1088/0004-637X/703/2/1734
Abstract
By means of numerical simulations, we investigate magnetized stellar winds of pre-main-sequence stars. In particular we analyze under which circumstances these stars will present elongated magnetic features (e.g., helmet streamers, slingshot prominences, etc). We focus on weak-lined T Tauri stars, as the presence of the tenuous accretion disk is not expected to have strong influence on the structure of the stellar wind. We show that the plasma-beta parameter (the ratio of thermal to magnetic energy densities) is a decisive factor in defining the magnetic configuration of the stellar wind. Using initial parameters within the observed range for these stars, we show that the coronal magnetic field configuration can vary between a dipole-like configuration and a configuration with strong collimated polar lines and closed streamers at the equator (multi-component configuration for the magnetic field). We show that elongated magnetic features will only be present if the plasma-beta parameter at the coronal base is beta<<1. Using our self-consistent 3D MHD model, we estimate for these stellar winds the time-scale of planet migration due to drag forces exerted by the stellar wind on a hot-Jupiter. In contrast to the findings of Lovelace et al. (2008), who estimated such time-scales using the Weber & Davis model, our model suggests that the stellar wind of these multi-component coronae are not expected to have significant influence on hot-Jupiters migration. Further simulations are necessary to investigate this result under more intense surface magnetic field strengths (~2-3 kG) and higher coronal base densities, as well as in a tilted stellar magnetosphere.
Accepted for publication in the Astrophysical Journal, 10 pages, 5 figures, emulateapj
References in corpus (26)
- The Magnetic Fields of Classical T Tauri Stars
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- Large-scale magnetic topologies of early M dwarfs
- Misaligned spin-orbit in the XO-3 planetary system?
- Magnetospheric accretion on the T Tauri star BP Tauri
- Magnetic fields and accretion flows on the classical T Tauri star V2129 Oph
- Accretion-Powered Stellar Winds II: Numerical Solutions for Stellar Wind Torques
- Falling Transiting Extrasolar Giant Planets
- A search for strong, ordered magnetic fields in Herbig Ae/Be stars
- Photometric and spectroscopic detection of the primary transit of the 111-day-period planet HD 80606 b
- On the Spin-Orbit Misalignment of the XO-3 Exoplanetary System
- A Correlation Between Pre-Main Sequence Stellar Rotation Rates and IRAC Excesses in Orion
- Measuring Magnetic Fields in Ultracool Stars and Brown Dwarfs
- Surface magnetic fields on two accreting T Tauri stars: CV Cha and CR Cha
- X-Ray flares in Orion Young Stars. II. Flares, Magnetospheres, and Protoplanetary Disks
- The non-dipolar magnetic fields of accreting T Tauri stars
- Magnetospheric Gap and Accumulation of Giant Planets Close to the Star
- Interacting coronae of two T Tauri stars: first observational evidence for solar-like helmet streamers
- Doppler Images and Chromospheric Variability of TWA 6
- Three-dimensional Numerical Simulations of Magnetized Winds of Solar-Like Stars
- How Hot is the Wind from TW Hydrae?
- The pecular magnetic field morphology of the white dwarf WD 1953-011: evidence for a large-scale magnetic flux tube?
- Magnetic Properties of Young Stars in the TW Hydrae Association
- Coronal structure of the cTTS V2129 Oph
- Magnetic fields in M dwarfs: rapid magnetic field variability in EV Lac
- Impact of non-uniform surface magnetic fields on stellar winds
Cited by in corpus (28)
- Stellar magnetism: empirical trends with age and rotation
- Exclusion of Cosmic Rays in Protoplanetary Disks: Stellar and Magnetic Effects
- Effects of M dwarf magnetic fields on potentially habitable planets
- Mass loss in pre-main sequence stars via coronal mass ejections and implications for angular momentum loss
- The stellar wind cycles and planetary radio emission of the Tau Boo system
- The evolution of the solar wind
- On the environment surrounding close-in exoplanets
- Magnetic games between a planet and its host star: the key role of topology
- Powerful Winds from Low-Mass Stars: V374 Peg
- Hot Jupiters and the evolution of stellar angular momentum
- Accretion, Outflows, and Winds of Magnetized Stars
- Star-planet magnetic interaction and activity in late-type stars with close-in planets
- Magnetic activity and hot Jupiters of young Suns: the weak-line T Tauri stars V819 Tau and V830 Tau
- Simulations of Winds of Weak-Lined T Tauri Stars. II.: The Effects of a Tilted Magnetosphere and Planetary Interactions
- Exoplanets as probes of the winds of host stars: the case of the M dwarf GJ 436
- Assessing magnetic torques and energy fluxes in close-in star-planet systems
- Influence of surface stressing on stellar coronae and winds
- MOVES I. The evolving magnetic field of the planet-hosting star HD189733
- The Effects of Magnetic Fields on Observational Signatures of Atmospheric Escape in Exoplanets: Double Tail Structures
- The Evolution of Earth's Magnetosphere During the Solar Main Sequence
- The winds of young Solar-type stars in the Hyades
- The winds of young Solar-type stars in the Pleiades, AB Doradus, Columba and Pictoris
- Stellar Coronal and Wind Models: Impact on Exoplanets
- Different types of star-planet interactions
- The effects of stellar winds and magnetic fields on exoplanets
- X-ray Super-Flares From Pre-Main Sequence Stars: Flare Modeling
- Planetary protection in the extreme environments of low-mass stars
- Interaction between Winds from Weak-lined T Tauri Stars with Exoplanetary Magnetospheres