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Atomic Physics of Shocked Plasma in Winds of Massive StarsHigh resolution diffraction grating spectra of X-ray emission from massive stars obtained with Chandra and XMM-Newton have revolutionized our understanding of their powerful, radiation-driven winds. Emission line shapes and line ratios provide diagnostics on a number of key wind parameters. Modeling of resolved emission line velocity profiles allows us to derive independent constraints on stellar mass-loss rates, leading to downward revisions of a factor of a few from previous measurements. Line ratios in He-like ions strongly constrain the spatial distribution of Xray emitting plasma, confirming the expectations of radiation hydrodynamic simulations that X-ray emission begins moderately close to the stellar surface and extends throughout the wind. Some outstanding questions remain, including the possibility of large optical depths in resonance lines, which is hinted at by differences in line shapes of resonance and intercombination lines from the same ion. Resonance scattering leads to nontrivial radiative transfer effects, and modeling it allows us to place constraints on shock size, density, and velocity structure
Document ID
20150000161
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
External Source(s)
Authors
Leutenegger, Maurice A.
(Maryland Univ. Baltimore County Catonsville, MD, United States)
Cohen, David H.
(Swarthmore Coll. PA, United States)
Owocki, Stanley P.
(Delaware Univ. Newark, DE, United States)
Date Acquired
January 5, 2015
Publication Date
May 25, 2012
Publication Information
Publication: American Institute of Physics Proceedings
Publisher: American Institute of Physics
Volume: 1438
Subject Category
Solar Physics
Report/Patent Number
GSFC-E-DAA-TN9552
Report Number: GSFC-E-DAA-TN9552
Funding Number(s)
CONTRACT_GRANT: AR7-8002X
CONTRACT_GRANT: NNG05GC36G
CONTRACT_GRANT: AR5-6003X
CONTRACT_GRANT: NNG04GL76G
CONTRACT_GRANT: NNG06EO90A
CONTRACT_GRANT: TM6-7003X
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
Physics
Atomic
Plasma
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