X-ray diagnostics of massive star winds
arXiv:1702.05613 · doi:10.1017/S1743921317002952
Abstract
Observations with powerful X-ray telescopes, such as XMM-Newton and Chandra, significantly advance our understanding of massive stars. Nearly all early-type stars are X-ray sources. Studies of their X-ray emission provide important diagnostics of stellar winds. High-resolution X-ray spectra of O-type stars are well explained when stellar wind clumping is taking into account, providing further support to a modern picture of stellar winds as non-stationary, inhomogeneous outflows. X-ray variability is detected from such winds, on time scales likely associated with stellar rotation. High-resolution X-ray spectroscopy indicates that the winds of late O-type stars are predominantly in a hot phase. Consequently, X-rays provide the best observational window to study these winds. X-ray spectroscopy of evolved, Wolf-Rayet type, stars allows to probe their powerful metal enhanced winds, while the mechanisms responsible for the X-ray emission of these stars are not yet understood.
5 pages, 1 figure, to be published in the Proceedings of the IAU Symposium No. 329 "The lives and death-throes of massive stars"
References in corpus (8)
- 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
- Modeling Ultraviolet Wind Line Variability in Massive Hot Stars
- MOST detects corotating bright spots on the mid-O type giant ξ Persei
- A new type of X-ray pulsar
- CIR Modulation of the X-ray Flux from the O7.5 III(n)((f)) Star xi Persei?
- X-ray, UV and optical analysis of supergiants: Ori
- On the nature of high reddening of Cygnus OB2 #12 hypergiant
- Probing Wolf-Rayet Winds: Chandra/HETG X-Ray Spectra of WR 6