Redshifted Absorption at He I 10830 as a Probe of the Accretion Geometry of T Tauri Stars
arXiv:0807.2483 · doi:10.1086/591902
Abstract
We probe the geometry of magnetospheric accretion in classical T Tauri stars by modeling red absorption at He I 10830 via scattering of the stellar and veiling continua. Under the assumptions that the accretion flow is an azimuthally symmetric dipole and helium is sufficiently optically thick that all incident 1-micron radiation is scattered, we illustrate the sensitivity of He I 10830 red absorption to both the size of the magnetosphere and the filling factor of the hot accretion shock. We compare model profiles to those observed in 21 CTTS with subcontinuum redshifted absorption at He I 10830 and find that about half of the stars have red absorptions and 1-micron veilings that are consistent with dipole flows of moderate width with accretion shock filling factors matching the size of the magnetospheric footpoints. However, the remaining 50% of the profiles, with a combination of broad, deep absorption and low 1-micron veiling, require very wide flows where magnetic footpoints are distributed over 10-20% of the stellar surface but accretion shock filling factors are < 1%. We model these profiles by invoking large magnetospheres dilutely filled with accreting gas, leaving the disk over a range of radii in many narrow "streamlets" that fill only a small fraction of the entire infall region. In some cases accreting streamlets need to originate in the disk between several stellar radii and at least the corotation radius. A few stars have such deep absorption at velocities greater than half the stellar escape velocity that flows near the star with less curvature than a dipole trajectory seem to be required.
26 pages, emulateapj format, Accepted by ApJ, to appear 2008 November 10
References in corpus (19)
- The distance to the Orion Nebula
- The Magnetic Fields of Classical T Tauri Stars
- Which jet launching mechanism(s) in TTauri stars?
- Magnetospheric accretion-ejection processes in the classical T Tauri star AA
- Probing T Tauri Accretion and Outflow with 1 Micron Spectroscopy
- On the formation of H-alpha line emission around classical T Tauri stars
- 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
- A VLT/NACO Survey for Triple and Quadruple Systems among Visual Pre-Main Sequence Binaries
- Modeling T Tauri Winds from He I 10830 Profiles
- Accretion to Stars with Non-dipole Magnetic Fields
- Three-dimensional Simulations of Accretion to Stars with Complex Magnetic Fields
- Accretion-Powered Stellar Winds III: Spin Equilibrium Solutions
- Mass Accretion onto T Tauri Stars
- Spectropolarimetry of the Classical T Tauri Star TW Hydrae
- Three-dimensional simulations of rotationally-induced line variability from a Classical T Tauri star with a misaligned magnetic dipole
- Emission-line profile modelling of structured T Tauri magnetospheres
- Stellar dynamo driven wind braking instead of disc coupling
Cited by in corpus (20)
- Diagnosing Mass Flows Around Herbig Ae/Be Stars Using the He I 10830 Line
- Redshifted X-rays from the material accreting onto TW Hya: evidence of a low-latitude accretion spot
- A Census of the Low Accretors. I: The Catalog
- ESO-H~574 and Par-Lup3-4 Jets: Exploring the spectral, kinematical and physical properties
- Investigating the magnetospheric accretion process in the young pre-transitional disk system DoAr 44 (V2062~Oph). A multiwavelength interferometric, spectropolarimetric, and photometric observing campaign
- The Anatomy of an Unusual Edge-on Protoplanetary Disk. II. Gas temperature and a warm outer region
- Star-disk interactions in multi-band photometric monitoring of the classical T Tauri star GI Tau
- Zodiacal Exoplanets in Time (ZEIT) XIII: Planet Orbits and Atmospheres in the V1298 Tau System, a Keystone in Studies of Early Planetary Evolution
- Anomalous Accretion Activity and the Spotted Nature of the DQ Tau Binary System
- The Eruption of the Candidate Young Star ASASSN-15qi
- Star-disk interaction in the T Tauri star V2129 Oph: An evolving accretion-ejection structure
- Linking Signatures of Accretion with Magnetic Field Measurements - Line Profiles are not Significantly Different in Magnetic and Non-Magnetic Herbig Ae/Be Stars
- The He I 10830 line as a probe of winds and accretion in young stars in Lupus and Upper Scorpius
- Stable accretion and episodic outflows in the young transition disk system GM Aurigae
- Probing Protoplanetary Disk Winds with C II Absorption
- Revisiting the Helium and Hydrogen Accretion Indicators at TWA 27B: Weak Mass Flow at Near-Freefall Velocity
- [Fe II] emissions associated with the young interacting binary UY Aurige
- Untangling the Near-IR Spectral Features in the Protoplanetary Environment of KH 15D
- Near-infrared spectroscopy of embedded protostars in the massive metal-poor star-forming region NGC 346
- RW Aur B: a modest UX Ori type companion of the famous primary