SIMBAD references

2002A&A...383..636P - Astronomy and Astrophysics, volume 383, 636-647 (2002/2-4)

In hot pursuit of the hidden companion of η Carinae: An X-ray determination of the wind parameters.

PITTARD J.M. and CORCORAN M.F.

Abstract (from CDS):

We present X-ray spectral fits to a recently obtained Chandra grating spectrum of η 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 models of colliding winds are used to generate synthetic X-ray spectra for a range of mass-loss rates and wind velocities. They are then fitted against newly acquired Chandra grating data. We find that due to the low velocity of the primary wind (≃500km/s), most of the observed X-ray emission appears to arise from the shocked wind of the companion star. We use the duration of the lightcurve minimum to fix the wind momentum ratio at η=0.2. We are then able to obtain a good fit to the data by varying the mass-loss rate of the companion and the terminal velocity of its wind. We find that {dot}(M)2≃10–5M/yr and v2≃3000km/s. With observationally determined values of ≃500-700km/s for the velocity of the primary wind, our fit implies a primary mass-loss rate of {dot}(M)1≃2.5x10–4M/yr. This value is smaller than commonly inferred, although we note that a lower mass-loss rate can reduce some of the problems noted by Hillier et al. (2001ApJ...553..837H) when a value as high as 10–3M/yr is used. The wind parameters of the companion are indicative of a massive star which may or may not be evolved. The line strengths appear to show slightly sub-solar abundances, although this needs further confirmation. Based on the over-estimation of the X-ray line strengths in our model, and re-interpretation of the HST/FOS results, it appears that the Homunculus nebula was produced by the primary star.

Abstract Copyright:

Journal keyword(s): stars: binaries: general - stars: early-type - stars: individual: η Carinae - stars: Wolf-Rayet - X-rays: stars

Simbad objects: 12

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