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The X-ray emission from the super-massive star Eta Carinae is simulated using a three dimensional model of the wind-wind collision. In the model the intrinsic X-ray emission is spatially extended and energy dependent. Absorption due to the…

高能天体物理现象 · 物理学 2015-05-13 E. R. Parkin , J. M. Pittard , M. F. Corcoran , K. Hamaguchi , I. R. Stevens

$\eta$ Carinae is a colliding wind binary hosting two of the most massive stars and featuring the strongest wind collision mechanical luminosity. The wind collision region of this system is detected in X-rays and $\gamma$-rays and offers a…

高能天体物理现象 · 物理学 2018-02-28 Christos Panagiotou , Roland Walter

We present X-ray spectral fits to a recently obtained Chandra grating spectrum of Eta Carinae, one of the most massive and powerful stars in the Galaxy and which is strongly suspected to be a colliding wind binary system. Hydrodynamic…

天体物理学 · 物理学 2009-11-07 J. M. Pittard , M. F. Corcoran

The very massive star system $\eta$ Carinae exhibits regular 5.54-year (2024-day) period disruptive events in wavebands ranging from the radio to X-ray. There is a growing consensus that these events likely stem from periastron passage of…

天体物理学 · 物理学 2009-11-13 A. T. Okazaki , S. P. Owocki , C. M. Russell , M. F. Corcoran

$\eta$ Carinae is composed of two very massive stars orbiting each other in 5.5 years. The primary star features the densest known stellar wind, colliding with that expelled by its companion. The wind collision region dissipates energy and…

高能天体物理现象 · 物理学 2019-05-15 Roland Walter , Matteo Balbo

The exact nature of eta Carinae is still an open issue. In this paper we assume a binary system to explain the strong X-ray emission, but we also take into account that, near periastron and because of the highly eccentric orbit, the wind…

天体物理学 · 物理学 2009-11-10 D. Falceta-Goncalves , V. Jatenco-Pereira , Z. Abraham

$\eta$ Carinae is an extremely luminous and energetic colliding-wind binary. The combination of its orbit and orientation, with respect to our line of sight, enables direct investigation of the conditions and geometry of the colliding…

太阳与恒星天体物理 · 物理学 2023-10-09 David Grant , Katherine Blundell , Emma Godden , Steven Lee , Chris McCowage

The colliding wind binary (CWB) systems \eta\ Carinae and WR140 provide unique laboratories for X-ray astrophysics. Their wind-wind collisions produce hard X-rays that have been monitored extensively by several X-ray telescopes, including…

太阳与恒星天体物理 · 物理学 2015-06-03 Christopher M. P. Russell , Stanley P. Owocki , Michael F. Corcoran , Atsuo T. Okazaki , Thomas I. Madura

Eta Carinae is the colliding wind binary with the largest mass loss rate in our Galaxy and the only one in which hard X-ray emission has been detected. Eta Carinae is therefore a primary candidate to search for particle acceleration by…

高能天体物理现象 · 物理学 2010-08-17 R. Walter , C. Farnier , J. -C. Leyder

We study the usage of the X-ray light curve, column density toward the hard X-ray source, and emission measure (density square times volume), of the massive binary system Eta Carinae to determine the orientation of its semi-major axis. The…

太阳与恒星天体物理 · 物理学 2015-05-13 Amit Kashi , Noam Soker

The massive binary system Eta Carinae is characterized by intense colliding winds that form shocks and emit X-rays. The system is highly eccentric ($e\simeq0.9$), resulting in modulated X-ray emission during its 5.54 year orbit. The X-ray…

高能天体物理现象 · 物理学 2021-06-17 Amit Kashi , David A. Principe , Noam Soker , Joel H. Kastner

The colliding wind binary (CWB) systems \eta\ Carinae and WR140 provide unique laboratories for X-ray astrophysics. Their wind-wind collisions produce hard X-rays that have been monitored extensively by several X-ray telescopes, including…

太阳与恒星天体物理 · 物理学 2011-10-11 Christopher M. P. Russell , Michael F. Corcoran , Atsuo T. Okazaki , Thomas I. Madura , Stanley P. Owocki

Context. Colliding-wind binaries are massive stellar systems featuring strong, interacting winds. These binaries may be actual particle accelerators, making them variable gamma-ray sources due to changes in the wind collision region along…

高能天体物理现象 · 物理学 2021-10-13 G. Martí-Devesa , O. Reimer

We report the results of an X-ray observing campaign on the massive, evolved star Eta Carinae, concentrating on the 2003 X-ray minimum as seen by the XMM-Newton observatory. These are the first spatially-resolved X-ray monitoring…

Recent work suggests that the mass-loss rate of the primary star (Eta A) in the massive colliding wind binary Eta Carinae dropped by a factor of 2-3 between 1999 and 2010. We present results from large- (r=1545au) and small- (r=155au)…

We report on variations in important X-ray emission lines in a series of Chandra grating spectra of the supermassive colliding wind binary star Eta Carinae, including key phases around the X-ray minimum/periastron passage in 2003.5. The…

天体物理学 · 物理学 2014-11-18 D. B. Henley , M. F. Corcoran , J. M. Pittard , I. R. Stevens , K. Hamaguchi , T. R. Gull

We calculate the X-ray luminosity and light curve for the stellar binary system Eta Carinae for the entire orbital period of 5.54 years. By using a new approach we find, as suggested before, that the collision of the winds blown by the two…

天体物理学 · 物理学 2009-11-13 Muhammad Akashi , Noam Soker , Ehud Behar

The highly eccentric binary system Eta Carinae shows numerous time-variable emission and absorption features. These observational signatures are the result of interactions between the complex three-dimensional (3D) wind-wind collision…

太阳与恒星天体物理 · 物理学 2015-06-23 Nicola Clementel , Thomas I. Madura , Chael Kruip , Jan-Pieter Paardekooper , Theodore R. Gull

Eta Carinae is considered to be a massive colliding wind binary system with a highly eccentric (e \sim 0.9), 5.54-yr orbit. However, the companion star continues to evade direct detection as the primary dwarfs its emission at most…

太阳与恒星天体物理 · 物理学 2011-11-10 Thomas I. Madura , Theodore R. Gull , Jose H. Groh , Stanley P. Owocki , Atsuo Okazaki , D. John Hillier , Christopher Russell

X-ray emission from the supermassive binary system Eta Carinae declines sharply around periastron. This X-ray minimum has two distinct phases - the lowest flux phase in the first ~3 weeks and a brighter phase thereafter. In 2009, the…

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