X-Ray flares in Orion Young Stars. II. Flares, Magnetospheres, and Protoplanetary Disks
arXiv:0807.3007 · doi:10.1086/592034
Abstract
We study the properties of powerful X-ray flares from 161 pre-main sequence (PMS) stars observed with the Chandra X-ray Observatory in the Orion Nebula region. Relationships between flare properties, protoplanetary disks and accretion are examined in detail to test models of star-disk interactions at the inner edge of the accretion disks. Previous studies had found no differences in flaring between diskfree and accreting systems other than a small overall diminution of X-ray luminosity in accreting systems. The most important finding is that X-ray coronal extents in fast-rotating diskfree stars can significantly exceed the Keplerian corotation radius, whereas X-ray loop sizes in disky and accreting systems do not exceed the corotation radius. This is consistent with models of star-disk magnetic interaction where the inner disk truncates and confines the PMS stellar magnetosphere. We also find two differences between flares in accreting and diskfree PMS stars. First, a subclass of super-hot flares with peak plasma temperatures exceeding 100 MK are preferentially present in accreting systems. Second, we tentatively find that accreting stars produce flares with shorter durations. Both results may be consequences of the distortion and destabilization of the stellar magnetosphere by the interacting disk. Finally, we find no evidence that any flare types, even slow-rise flat-top flares are produced in star-disk magnetic loops. All are consistent with enhanced solar long-duration events with both footprints anchored in the stellar surface.
Accepted for publication in ApJ (07/17/08); 46 pages, 14 figures, 2 tables
References in corpus (26)
- The Magnetic Fields of Classical T Tauri Stars
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- Simulations of dynamo action in fully convective stars
- Magnetospheric accretion on the T Tauri star BP Tauri
- Magnetic fields and accretion flows on the classical T Tauri star V2129 Oph
- Accretion funnels onto weakly magnetized young stars
- X-ray flares in Orion young stars. I. Flare characteristics
- A Correlation Between Pre-Main Sequence Stellar Rotation Rates and IRAC Excesses in Orion
- Diagnostics of stellar flares from X-ray observations: from the decay to the rise phase
- Nonthermal Hard X-ray Emission and Iron Kalpha Emission from a Superflare on II Pegasi
- X-ray emission from MP Muscae: an old classical T Tauri star
- Accretion to Stars with Non-dipole Magnetic Fields
- X-ray properties of protostars in the Orion Nebula
- The X-ray soft excess in classical T Tauri stars
- A statistical analysis of X-ray variability in pre-main sequence objects of the Taurus Molecular Cloud
- Mass Accretion onto T Tauri Stars
- ACIS-I observations of NGC2264. Membership and X-ray properties of PMS stars
- T Tauri stellar magnetic fields: He I measurements
- Evidence for Accretion in the High-resolution X-ray Spectrum of the T Tauri Star System Hen 3-600
- X-ray Flares in Orion Low Mass Stars
- Interacting coronae of two T Tauri stars: first observational evidence for solar-like helmet streamers
- A Simultaneous Optical and X-ray Variability Study of the Orion Nebula Cluster. I. Incidence of Time-Correlated X-ray/Optical Variations
- Why are accreting T Tauri stars observed to be less luminous in X-rays than non-accretors?
- Spectropolarimetry of the Classical T Tauri Star TW Hydrae
- Spectral properties of X-ray bright variable sources in the Taurus Molecular Cloud
- Rotationally Modulated X-ray Emission from T Tauri Stars
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- Age Gradients in the Stellar Populations of Massive Star Forming Regions Based on a New Stellar Chronometer
- Protoplanetary Disk Evolution around the Triggered Star Forming Region Cepheus B
- Giant protostellar flares: accretion-driven accumulation and reconnection-driven ejection of magnetic flux in protostars
- Pre-main-sequence binaries with tidally disrupted discs: the Br gamma in HD 104237
- Extreme radio flares and associated X-ray variability from young stellar objects in the Orion Nebula Cluster
- X-ray emission processes in stars
- A new view of the corona of classical T Tauri stars: Effects of flaring activity in circumstellar disks
- A Combined Chandra and LAMOST Study of Stellar Activity
- The [Ne III] Jet of DG Tau and its Ionization Scenarios
- A Search For X-ray Emission From Colliding Magnetospheres In Young Eccentric Stellar Binaries
- Young Stellar Populations in MYStIX Star Forming Regions: Candidate Protostars
- Velocity-Resolved [Ne III] from X-Ray Irradiated Sz 102 Microjets
- An X-ray flare from 47 Cas
- Accretion, jets and winds: High-energy emission from young stellar objects
- The complex phenomena of YSOs revealed by their X-ray variability
- High Energy Emission and its Variability in Young Stellar Objects