Context. In high mass X-ray binaries, an accreting compact object orbits a high mass star, which loses mass through a dense and inhomogeneous wind. Aims. Using the compact object as an X-ray backlight, the time variability of the absorbing column density in the wind can be exploited in order to shed light on the micro-structure of the wind and obtain unbiased stellar mass-loss rates for high mass stars. Methods. We developed a simplified representation of the stellar wind where all the matter is gathered in spherical “clumps” that are radially advected away from the star. This model enables us to explore the connections between the stochastic properties of the wind and the variability of the column density for a comprehensive set of paramet...
Accretion onto compact objects of material from strong stellar winds, be it in High-Mass X-ray Binar...
Context. About ten persistently highly absorbed super-giant high-mass X-ray binaries (sgHMXB) have b...
Context. In wind-powered X-ray binaries, the radiatively driven stellar wind from the primary may be...
Context. In high mass X-ray binaries, an accreting compact object orbits a high mass star, which los...
The clumpy stellar wind from the companion star in high-mass X-ray binaries causes variable, partial...
Winds of massive stars are suspected to be clumpy, which biases the measures of their mass loss rat...
In this paper we propose and examine a physical mechanism which can lead to the generation of noise ...
Context.INTEGRAL, the European Space Agency's γ-ray observatory, tripled the number of super-giant h...
International audienceStellar winds of massive stars are known to be driven by line absorption of UV...
© 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Strongly magnetized, accreting neutron stars sho...
In the subclass of high-mass X-ray binaries known as "microquasars, " relativistic hadrons in the je...
High mass X-ray binaries hold the promise of allowing us to understand the structure of the winds of...
Context. Low mass X-ray binaries are found to have very low frequency breaks in their power density ...
Context. High-mass X-ray binaries are bright X-ray sources. The high-energy emission is caused by th...
We fit X-ray emission line profiles in high resolution XMM-Newton and Chandra grating spectra of the...
Accretion onto compact objects of material from strong stellar winds, be it in High-Mass X-ray Binar...
Context. About ten persistently highly absorbed super-giant high-mass X-ray binaries (sgHMXB) have b...
Context. In wind-powered X-ray binaries, the radiatively driven stellar wind from the primary may be...
Context. In high mass X-ray binaries, an accreting compact object orbits a high mass star, which los...
The clumpy stellar wind from the companion star in high-mass X-ray binaries causes variable, partial...
Winds of massive stars are suspected to be clumpy, which biases the measures of their mass loss rat...
In this paper we propose and examine a physical mechanism which can lead to the generation of noise ...
Context.INTEGRAL, the European Space Agency's γ-ray observatory, tripled the number of super-giant h...
International audienceStellar winds of massive stars are known to be driven by line absorption of UV...
© 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Strongly magnetized, accreting neutron stars sho...
In the subclass of high-mass X-ray binaries known as "microquasars, " relativistic hadrons in the je...
High mass X-ray binaries hold the promise of allowing us to understand the structure of the winds of...
Context. Low mass X-ray binaries are found to have very low frequency breaks in their power density ...
Context. High-mass X-ray binaries are bright X-ray sources. The high-energy emission is caused by th...
We fit X-ray emission line profiles in high resolution XMM-Newton and Chandra grating spectra of the...
Accretion onto compact objects of material from strong stellar winds, be it in High-Mass X-ray Binar...
Context. About ten persistently highly absorbed super-giant high-mass X-ray binaries (sgHMXB) have b...
Context. In wind-powered X-ray binaries, the radiatively driven stellar wind from the primary may be...