We present results from Hubble Space Telescope ultraviolet spectroscopy of the massive X-ray and black hole binary system, HD 226868 = Cyg X-1. The spectra were obtained at both orbital conjunction phases in 2002 and 2003, when the system was in the X-ray high/soft state. The UV stellar wind lines suffer large reductions in absorption strength when the black hole is in the foreground due to the X-ray ionization of the wind ions. We constructed model UV wind line profiles assuming that X-ray ionization occurs everywhere in the wind except the zone where the supergiant blocks the X-ray flux. The goodmatch between the observed and model profiles indicates that the wind ionization extends to near the hemisphere of the supergiant facing the X-ra...
High-mass X-ray binary systems are powered by the stellar wind of their donor stars. The X-ray state...
The study of black holes is one of the most important topics in high energy astrophysics. Cygnus X-1...
We present a spectroscopic analysis of the O9.7 Iab star HDE 226868, which is the optical counterpar...
We present results from Hubble Space Telescope ultraviolet spectroscopy of the massive X-ray and bla...
We present results from Hubble Space Telescope ultraviolet spectroscopy of the massive X-ray and bla...
We present the results of a spectroscopic monitoring program (from 1998 to 2002) of the H-alpha emis...
The X-ray luminosity of black holes is produced through the accretion of material from their compani...
Accretion onto the black hole in the system HDE 226868/Cygnus X-1 is powered by the strong...
We present an analysis of three Chandra High Energy Transmission Gratings observations of the black ...
Context. Cygnus X-1 is a black hole X-ray binary system in which the black hole captures and accrete...
We present analyses of a 50 ks observation of the supergiant X-ray binary system Cygnus X-1 (Cyg X-1...
High mass X-ray binaries accrete via the stellar wind of their supermassive companion. The stellar w...
Binary systems with an accreting compact object offer a unique opportunity to investigate the strong...
High-resolution Hα monitoring of Cyg X-1, HD 226868 was carried out during 1996–2002 and the resulta...
We present an examination of high-resolution, ultraviolet (UV) spectroscopy from Hubble Space Telesc...
High-mass X-ray binary systems are powered by the stellar wind of their donor stars. The X-ray state...
The study of black holes is one of the most important topics in high energy astrophysics. Cygnus X-1...
We present a spectroscopic analysis of the O9.7 Iab star HDE 226868, which is the optical counterpar...
We present results from Hubble Space Telescope ultraviolet spectroscopy of the massive X-ray and bla...
We present results from Hubble Space Telescope ultraviolet spectroscopy of the massive X-ray and bla...
We present the results of a spectroscopic monitoring program (from 1998 to 2002) of the H-alpha emis...
The X-ray luminosity of black holes is produced through the accretion of material from their compani...
Accretion onto the black hole in the system HDE 226868/Cygnus X-1 is powered by the strong...
We present an analysis of three Chandra High Energy Transmission Gratings observations of the black ...
Context. Cygnus X-1 is a black hole X-ray binary system in which the black hole captures and accrete...
We present analyses of a 50 ks observation of the supergiant X-ray binary system Cygnus X-1 (Cyg X-1...
High mass X-ray binaries accrete via the stellar wind of their supermassive companion. The stellar w...
Binary systems with an accreting compact object offer a unique opportunity to investigate the strong...
High-resolution Hα monitoring of Cyg X-1, HD 226868 was carried out during 1996–2002 and the resulta...
We present an examination of high-resolution, ultraviolet (UV) spectroscopy from Hubble Space Telesc...
High-mass X-ray binary systems are powered by the stellar wind of their donor stars. The X-ray state...
The study of black holes is one of the most important topics in high energy astrophysics. Cygnus X-1...
We present a spectroscopic analysis of the O9.7 Iab star HDE 226868, which is the optical counterpar...