An Extensive Collection of Stellar Wind X-ray Source Region Emission Line Parameters,Temperatures, Velocities, and Their Radial Distributions as Obtained from Chandra Observations of 17 OB Stars
arXiv:0707.0024 · doi:10.1086/520919
Abstract
Chandra high energy resolution observations have now been obtained from numerous non-peculiar O and early B stars. The observed X-ray emission line properties differ from pre-launch predictions, and the interpretations are still problematic. We present a straightforward analysis of a broad collection of OB stellar line profile data to search for morphological trends. X-ray line emission parameters and the spatial distributions of derived quantities are examined with respect to luminosity class. The X-ray source locations and their corresponding temperatures are extracted by using the He-like f/i line ratios and the H-like to He-like line ratios respectively. Our luminosity class study reveals line widths increasing with luminosity. Although the majority of the OB emission lines are found to be symmetric, with little central line displacement, there is evidence for small, but finite, blue-ward line-shifts that also increase with luminosity. The spatial X-ray temperature distributions indicate that the highest temperatures occur near the star and steadily decrease outward. This trend is most pronounced in the OB supergiants. For the lower density wind stars, both high and low X-ray source temperatures exist near the star. However, we find no evidence of any high temperature X-ray emission in the outer wind regions for any OB star. Since the temperature distributions are counter to basic shock model predictions, we call this the "near-star high-ion problem" for OB stars. By invoking the traditional OB stellar mass loss rates, we find a good correlation between the fir-inferred radii and their associated X-ray continuum optical depth unity radii. We conclude by presenting some possible explanations to the X-ray source problems that have been revealed by this study.
Published in 2007, ApJ, 668, 456. An Erratum scheduled for publication in 2008, ApJ, 680, is included as an Appendix. The Erratum corrects some tabulated data in 5 tables and 2 figures
References in corpus (5)
- The surprising magnetic topology of tauSco: fossil remnant or dynamo output?
- The Effect of Porosity on X-ray Emission Line Profiles from Hot-Star Winds
- High resolution X-ray spectroscopy of bright O type stars
- Wind signatures in the X-ray emission line profiles of the late O supergiant Orionis
- Evidence for the importance of resonance scattering in X-ray emission line profiles of the O star Puppis
Cited by in corpus (16)
- Mass loss from hot massive stars
- X-Ray Spectroscopy of Stars
- A Catalog of X-ray Point Sources from Two Megaseconds of Chandra Observations of the Galactic Center
- X-ray Spectroscopy of the 2006 Outburst of RS Oph
- Discovery of two magnetic massive stars in the Orion Nebula Cluster: a clue to the origin of neutron star magnetic fields?
- The magnetic field and the location of the TeV emitter in Cygnus X-1 and LS 5039
- On the Importance of the Interclump Medium for Superionization: O VI Formation in the Wind of Zeta Pup
- NLTE models of line-driven stellar winds III. Influence of X-ray radiation on wind structure of O stars
- Discovery of a young massive stellar cluster near HESS J1813-178
- Testing magnetically confined wind shock models for Beta Cep using XMM-Newton and Chandra phase-resolved X-ray observations
- Discovery of X-ray Emission from the Wolf-Rayet star WR142 of oxygen subtype
- The Effects of Clumps in Explaining X-ray Emission Lines from Hot Stars
- The Correlation between X-Ray Line Ionization and Optical Spectral Types of the OB Stars
- Highly Accelerated Diamagnetic Plasmoids: A New X-ray Production Mechanism for OB Stellar Winds
- New deep XMM-Newton observations to the west of the sigma Orionis cluster
- X-ray Emission from Magnetically Torqued Disks of Oe/Be Stars