Testing Models of Accretion-driven Coronal Heating and Stellar Wind Acceleration for T Tauri Stars
arXiv:0910.2686 · doi:10.1088/0004-637X/706/1/824
Abstract
Classical T Tauri stars are pre-main-sequence objects that undergo simultaneous accretion, wind outflow, and coronal X-ray emission. The impact of plasma on the stellar surface from magnetospheric accretion streams is likely to be a dominant source of energy and momentum in the upper atmospheres of these stars. This paper presents a set of models for the dynamics and heating of three distinct regions on T Tauri stars that are affected by accretion: (1) the shocked plasmas directly beneath the magnetospheric accretion streams, (2) stellar winds that are accelerated along open magnetic flux tubes, and (3) closed magnetic loops that resemble the Sun's coronal active regions. For the loops, a self-consistent model of coronal heating was derived from numerical simulations of solar field-line tangling and turbulent dissipation. Individual models are constructed for the properties of 14 well-observed stars in the Taurus-Auriga star-forming region. Predictions for the wind mass loss rates are, on average, slightly lower than the observations, which suggests that disk winds or X-winds may also contribute to the measured outflows. For some of the stars, however, the modeled stellar winds do appear to contribute significantly to the measured mass fluxes. Predictions for X-ray luminosities from the shocks and loops are in general agreement with existing observations. The stars with the highest accretion rates tend to have X-ray luminosities dominated by the high-temperature (5-10 MK) loops. The X-ray luminosities for the stars having lower accretion rates are dominated by the cooler accretion shocks.
20 pages (emulateapj style), 13 figures, ApJ, in press (v. 706, December 1, 2009)
References in corpus (39)
- Self-consistent Coronal Heating and Solar Wind Acceleration from Anisotropic Magnetohydrodynamic Turbulence
- The Magnetic Fields of Classical T Tauri Stars
- Coronal Holes
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- Which jet launching mechanism(s) in TTauri stars?
- Magnetospheric accretion-ejection processes in the classical T Tauri star AA
- Episodic accretion at early stages of evolution of low mass stars and brown dwarfs: a solution for the observed luminosity spread in HR diagrams?
- Magnetic fields and accretion flows on the classical T Tauri star V2129 Oph
- "Propeller" Regime of Disk Accretion to Rapidly Rotating Stars
- X-ray Emission from T Tauri Stars and the Role of Accretion: Inferences from the XMM-Newton Extended Survey of the Taurus Molecular Cloud
- Rapidly Rotating Suns and Active Nests of Convection
- Coronal Heating, Weak MHD Turbulence and Scaling Laws
- X-ray emission from MP Muscae: an old classical T Tauri star
- X-ray emission from classical T Tauri stars: Accretion shocks and coronae?
- Accretion to Stars with Non-dipole Magnetic Fields
- Turbulence-driven Polar Winds from T Tauri Stars Energized by Magnetospheric Accretion
- Forecasting Solar Wind Speeds
- Three-dimensional Simulations of Accretion to Stars with Complex Magnetic Fields
- Accretion-Powered Stellar Winds III: Spin Equilibrium Solutions
- Photometric variability of the T Tauri star TW Hya on time scales of hours to years
- X-rays from RU Lupi - Accretion and winds in CTTS
- X-ray emission from dense plasma in CTTSs: Hydrodynamic modeling of the accretion shock
- X-rays from jet-driving protostars and T Tauri stars
- The non-dipolar magnetic fields of accreting T Tauri stars
- Simulations of turbulent convection in rotating young solar-like stars: Differential rotation and meridional circulation
- Oscillations of MHD shock waves on the surfaces of T Tauri stars
- The "zeroth law" of turbulence: Isotropic turbulence simulations revisited
- A Simultaneous Optical and X-ray Variability Study of the Orion Nebula Cluster. I. Incidence of Time-Correlated X-ray/Optical Variations
- X-ray Photoevaporation-starved T Tauri Accretion
- Why are accreting T Tauri stars observed to be less luminous in X-rays than non-accretors?
- Hyperdiffusion as a Mechanism for Solar Coronal Heating
- Rotationally Modulated X-ray Emission from T Tauri Stars
- Observation of enhanced X-ray emission from the CTTS AA Tau during a transit of an accretion funnel
- Results from Droxo. I. The variability of fluorescent Fe 6.4 keV emission in the young star Elias 29: High-energy electrons in the star's accretion tubes?
- On the magnetic structure and wind parameter profiles of Alfven wave driven winds in late-type supergiant stars
- X-ray and optical bursts and flares in YSOs: results from a 5-day XMM-Newton monitoring campaign of L1551
- The X-ray activity-rotation relation of T Tauri stars in Taurus-Auriga
- Static and Impulsive Models of Solar Active Regions
- Two-flow magnetohydrodynamical jets around young stellar objects
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- Magnetic activity and hot Jupiters of young Suns: the weak-line T Tauri stars V819 Tau and V830 Tau
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- Probing the wind launching regions of the Herbig Be star HD 58647 with high spectral resolution interferometry
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- Magnetic Braking of Accreting T Tauri Stars II: Torque Formulation Spanning Spin-Up and Spin-Down Regimes
- Magnetic activity and radial velocity filtering of young Suns: The weak-line T Tauri stars Par 1379 and Par 2244
- Time-Dependent Turbulent Heating of Open Flux Tubes in the Chromosphere, Corona, and Solar Wind
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- Global 3-D Simulations of Magnetospheric Accretion: II. Hot Spots, Equilibrium Torque, Episodic Wind, and Midplane Outflow
- Laboratory evidence for asymmetric accretion structure upon slanted matter impact in young stars
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- Slow Solar Wind Connection Science during Solar Orbiter's First Close Perihelion Passage
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- UVMag: stellar formation, evolution, structure and environment with space UV and visible spectropolarimetry
- A diagnosis on torque reversals in 4U 1626-67
- Atmospheric Heating and Wind Acceleration: Results for Cool Evolved Stars based on Proposed Processes
- New Insights: the Accretion Process and Variable Wind from TW Hya