X-ray flares in Orion young stars. I. Flare characteristics
arXiv:0807.3005 · doi:10.1086/592033
Abstract
Pre-main sequence (PMS) stars are known to produce powerful X-ray flares which resemble magnetic reconnection solar flares scaled by factors up to 10^4. However, numerous puzzles are present including the structure of X-ray emitting coronae and magnetospheres, effects of protoplanetary disks, and effects of stellar rotation. To investigate these issues in detail, we examine 216 of the brightest flares from 161 PMS stars observed in the Chandra Orion Ultradeep Project (COUP). These constitute the largest homogeneous dataset of PMS, or indeed stellar flares at any stellar age, ever acquired. Our effort is based on a new flare spectral analysis technique that avoids nonlinear parametric modeling. It can be applied to much weaker flares and is more sensitive than standard methods. We provide a catalog with >30 derived flare properties and an electronic atlas for this unique collection of stellar X-ray flares. The current study (Paper I) examines the flare morphologies, and provides general comparison of COUP flare characteristics with those of other active X-ray stars and the Sun. Paper II will concentrate on relationships between flare behavior, protoplanetary disks, and other stellar properties. Several results are obtained. First, the COUP flares studied here are among the most powerful, longest, and hottest stellar X-ray flares ever studied. Second, no significant statistical differences in peak flare luminosity or temperature distributions are found among different morphological flare classes, suggesting a common underlying mechanism for all flares. Third, comparison with the general solar-scaling laws indicates that COUP flares may not fit adequately proposed power-temperature and duration-temperature solar-stellar fits. Fourth, COUP super-hot flares are found to be brighter but shorter than ... ABRIDGED
Accepted for publication in ApJ (07/11/08); 63 pages, 16 figures, 4 tables
References in corpus (13)
- Magnetic fields and accretion flows on the classical T Tauri star V2129 Oph
- 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
- Scaling laws of solar and stellar flares
- Three-dimensional Simulations of Accretion to Stars with Complex Magnetic Fields
- X-ray Flares in Orion Low Mass Stars
- The onset of X-ray emission in young stellar objects: a Chandra observation of the Serpens star-forming region
- 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
- Spectral properties of X-ray bright variable sources in the Taurus Molecular Cloud
- X-Ray Flaring on the dMe Star, Ross 154
- X-ray flaring from the young stars in CygnusOB2
- X-ray flares on the UV Ceti-type star CC Eridani: a "peculiar" time-evolution of spectral parameters
Cited by in corpus (36)
- The Solar Orbiter mission -- Science overview
- Geminga's puzzling pulsar wind nebula
- X-Ray flares in Orion Young Stars. II. Flares, Magnetospheres, and Protoplanetary Disks
- A Very Bright, Very Hot, and Very Long Flaring Event from the M Dwarf Binary System DG CVn
- Variable HCO Emission in the IM Lup Disk: X-ray Driven Time-Dependent Chemistry?
- X-ray Super-Flares From Pre-Main Sequence Stars: Flare Energetics And Frequency
- On the mass accretion rate and infrared excess in Herbig Ae/Be Stars
- Protoplanetary Disk Evolution around the Triggered Star Forming Region Cepheus B
- Simultaneous Kepler/K2 and XMM-Netwon observations of superflares in the Pleiades
- The Secret Lives of Cepheids: Cep -- the Prototype of a New Class of Pulsating X-ray Variable Stars
- Extreme radio flares and associated X-ray variability from young stellar objects in the Orion Nebula Cluster
- A Comparison of the X-ray Properties of FU Ori-type Stars to Generic Young Stellar Objects
- Synthetic Light Curves of Accretion Variability in T Tauri Stars
- Swift and XMM-Newton observations of an RS CVn type eclipsing binary SZ Psc: Superflare and coronal properties
- Evidence for magnetic activity at starbirth: a powerful X-ray flare from the Class 0 protostar HOPS 383
- A new view of the corona of classical T Tauri stars: Effects of flaring activity in circumstellar disks
- The Structure of the Young Star Cluster NGC 6231. I. Stellar Population
- The Mouse that Squeaked: A small flare from Proxima Cen observed in the millimeter, optical, and soft X-ray with Chandra and ALMA
- Classification of X-ray Flare Driven Chemical Variability in Protoplanetary Disks
- The [Ne III] Jet of DG Tau and its Ionization Scenarios
- Modeling Time Dependent Water Chemistry Due to Powerful X-ray Flares from T-Tauri Stars
- A Search For X-ray Emission From Colliding Magnetospheres In Young Eccentric Stellar Binaries
- Characterizing the X-ray Emission of Intermediate-Mass Pre-Main-Sequence Stars
- XMM-Newton observation of the interacting galaxies NGC1512 and NGC1510
- 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
- Time-resolved protoplanetary disk physics in DQ Tau with JWST
- Modeling Hadronic Gamma-ray Emissions from Solar Flares and Prospects for Detecting Non-thermal Signatures from Protostars
- The complex phenomena of YSOs revealed by their X-ray variability
- Discovery of two new Fast X-ray Transients with INTEGRAL: IGR J03346+4414 and IGR J20344+3913
- High Energy Emission and its Variability in Young Stellar Objects
- An X-ray View of Two Infrared Dark Clouds G034.43+00.24 and G035.39-00.33
- X-ray Super-Flares From Pre-Main Sequence Stars: Flare Modeling
- Chandra X-ray Observations of V830 Tau: A T Tauri Star Hosting an Evanescent Planet
- Serendipitous detection of an intense X-ray flare in the weak-line T Tauri star KM Ori with SRG/eROSITA