Aims. We have developed a new code for the three-dimensional time-dependent raditation hydrodynamic simulation of the stellar wind in interacting binaries to improve models of accretion in high-mass X-ray binaries and to quantitatively clarify the observed variability of these objects. We used the code to test the influence of various parameters on the structure and properties of circumstellar matter. Methods. Our code takes into account acceleration of the wind due to the Roche effective potential, Coriolis force, gas pressure, and (CAK-) radiative pressure in the lines and continuum of the supergiant radiation field that is modulated by its gravity darkening and...
The X-ray luminosity of black holes is produced through the accretion of material from their compani...
© ESO 2019. Context. In supergiant X-ray binaries (SgXB), a compact object captures a fraction of th...
Title: Physics of X-ray binaries Author: Jan Čechura Department: Astronomical Institute of the Acade...
Aims. We have developed a new code for the three-dimensional time-dependent raditation hyd...
Aims. We investigate the anisotropy of stellar winds in binaries to improve the models of accretion ...
In this thesis we discuss the properties of a radiation-driven stellar wind in an X-ray binary syste...
Context. Cygnus X-1 is a black hole X-ray binary system in which the black hole captures and accrete...
Context. The radiatively driven wind of the primary star in wind-fed X-ray binaries can be suppresse...
We present results from Hubble Space Telescope ultraviolet spectroscopy of the massive X-ray and bla...
We provide a brief review of the physical processes behind the radiative driving of the winds of OB ...
Accretion onto compact objects of material from strong stellar winds, be it in High-Mass X-ray Binar...
Context. The wind-wind collision in a massive star binary system leads to the generation of high tem...
Context. In supergiant X-ray binaries (SgXB), a compact object captures a fraction of the wind of an...
We present results from Hubble Space Telescope ultraviolet spectroscopy of the massive X-ray and bla...
Context. The wind-wind collision in a massive star binary system leads to the generation of high tem...
The X-ray luminosity of black holes is produced through the accretion of material from their compani...
© ESO 2019. Context. In supergiant X-ray binaries (SgXB), a compact object captures a fraction of th...
Title: Physics of X-ray binaries Author: Jan Čechura Department: Astronomical Institute of the Acade...
Aims. We have developed a new code for the three-dimensional time-dependent raditation hyd...
Aims. We investigate the anisotropy of stellar winds in binaries to improve the models of accretion ...
In this thesis we discuss the properties of a radiation-driven stellar wind in an X-ray binary syste...
Context. Cygnus X-1 is a black hole X-ray binary system in which the black hole captures and accrete...
Context. The radiatively driven wind of the primary star in wind-fed X-ray binaries can be suppresse...
We present results from Hubble Space Telescope ultraviolet spectroscopy of the massive X-ray and bla...
We provide a brief review of the physical processes behind the radiative driving of the winds of OB ...
Accretion onto compact objects of material from strong stellar winds, be it in High-Mass X-ray Binar...
Context. The wind-wind collision in a massive star binary system leads to the generation of high tem...
Context. In supergiant X-ray binaries (SgXB), a compact object captures a fraction of the wind of an...
We present results from Hubble Space Telescope ultraviolet spectroscopy of the massive X-ray and bla...
Context. The wind-wind collision in a massive star binary system leads to the generation of high tem...
The X-ray luminosity of black holes is produced through the accretion of material from their compani...
© ESO 2019. Context. In supergiant X-ray binaries (SgXB), a compact object captures a fraction of th...
Title: Physics of X-ray binaries Author: Jan Čechura Department: Astronomical Institute of the Acade...