The first high-resolution X-ray spectrum of a Herbig Star: The case of AB Aurigae
arXiv:astro-ph/0610456 · doi:10.1051/0004-6361:20065422
Abstract
We present the first high-resolution X-ray spectrum of a prototypical Herbig star (AB Aurigae), measure and interpret various spectral features, and compare our results with model predictions. We use X-ray spectroscopy data from XMM-Newton. The spectra are interpreted using thermal, optically thin emission models with variable element abundances and a photoelectric absorption component. We interpret line flux ratios in He-like triplet of O VII as a function of electron density and the UV radiation field. We use the nearby co-eval classical T Tauri star SU Aur as a comparison. AB Aurigae reveals a soft X-ray spectrum, most plasma being concentrated at 1-6 MK. The He-like triplet reveals no signatures of increased densities and there are no clear indications for strong abundance anomalies. The light curve displays modulated variability, with a period of ~ 42 hr. It is unlikely that a nearby, undetected lower-mass companion is the source of the X-rays. Accretion shocks close to the star should be irradiated by the photosphere, leading to alteration in the He-like triplet fluxes of O VII, which we do not measure. Also, no indications for high densities are found, although the mass accretion rate is presently unknown. Emission from wind shocks is unlikely, given the weak radiation pressure. A possible explanation would be a solar-like magnetic corona. Magnetically confined winds provide a very promising alternative. The X-ray period is indeed close to periods previously measured in optical lines from the wind.
18 pages, 7 Figures
References in corpus (4)
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- A statistical analysis of X-ray variability in pre-main sequence objects of the Taurus Molecular Cloud
- High Resolution X-ray Spectroscopy of T Tauri Stars in the Taurus-Auriga Complex
- X-ray emission from the young brown dwarfs of the Taurus Molecular Cloud
Cited by in corpus (24)
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- X-Ray Spectroscopy of 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
- Line Emission from Gas in Optically Thick Dust Disks around Young Stars
- X-rays from T Tau: A test case for accreting T Tauri stars
- The X-ray soft excess in classical T Tauri stars
- X-rays from jet-driving protostars and T Tauri stars
- High Resolution X-ray Spectroscopy of T Tauri Stars in the Taurus-Auriga Complex
- Coronae in the Coronet: A very deep X-ray look into a stellar nursery
- Jets, accretion, coronae and all that: The enigmatic X-rays from the Herbig star HD 163296
- Further X-ray detections of Herbig stars
- Where are the hot ion lines in classical T Tauri stars formed?
- Spectral properties of X-ray bright variable sources in the Taurus Molecular Cloud
- Chemistry in Disks. II. -- Poor molecular content of the AB Aur disk
- Magnetohydrodynamic modeling of the accretion shocks in classical T Tauri stars: the role of local absorption on the X-ray emission
- Chandra and Spitzer Imaging of the Infrared Cluster in NGC 2071
- X-ray emission processes in stars
- Using Multiwavelength Variability to Explore the Connection between X-ray Emission, the Far-Ultraviolet H2 Bump, and Accretion in T Tauri Stars
- X-ray Emission from Young Stellar Objects in the εChamaeleontis Group: the Herbig Ae Star HD 104237 and Associated Low-Mass Stars
- The disk-bearing young star IM Lup
- Formation of X-ray emitting stationary shocks in magnetized protostellar jets
- X-rays from young stars - a summary of highlights from the XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- Accretion, jets and winds: High-energy emission from young stellar objects
- Coronal and chromospheric emission in A-type stars