Accreting black holes emit highly collimated radio jets expanding at speeds approaching light speed. Some of these jets appear to be expanding at superluminal speeds due to geometric effects. While magnetic fields are thought to be responsible for collimating the ejecta, the mechanism that accelerates the material in these jets remains unexplained. For the galactic black hole GRS 1915+105 with a superluminal radio jet, it has been proposed that thermal instabilities in the accretion disk lead to the ejection of the inner parts of the disk into the jet. Here we use X-ray and radio observations over a 10-year period to reveal a strong correlation between (i) the radio flux that comes from the jet and the flux of the iron emission line that co...
Fast variability in X-ray binaries has been studied for many decades, which is associated with accre...
We have studied the accretion disk during the radio plateau state and the following superluminal rel...
More than a dozen binary star systems hosting stellar-mass black holes have been discovered in our g...
Accreting black holes emit highly collimated radio jets expanding at speeds approaching light speed....
We present evidence of a direct accretion disk-jet connection in the Galactic microquasar GRS 1915+1...
More than a dozen binary star systems hosting stellar-mass black holes have been discovered in our g...
A subset of ultraluminous X-ray sources (those with luminosities \u3c 10^40 erg s^-1)^1 are thought ...
The Galactic black hole transient GRS 1915+105 is famous for its markedly variable X-ray and radio b...
Recent observations of GRS 1915+105 and GRO J1655+40 reveal superluminal motions in Galactic sources...
Models of jet production in black hole systems suggest that the properties of the accretion disk‚Ã...
During outburst, black-hole X-ray binaries (BHXRBs) exhibit time variability over a wide range of ti...
We propose a simple dynamical model that may account for the observed spectral and temporal properti...
GX 339-4 is a black hole X-ray binary that is a key focus of accretion studies, since it goes into o...
Accretion of gas onto black holes is thought to power the relativistic jets of material ejected from...
We have examined the radio emission characteristics of the micro-quasar GRS 1915+105 during its X-ra...
Fast variability in X-ray binaries has been studied for many decades, which is associated with accre...
We have studied the accretion disk during the radio plateau state and the following superluminal rel...
More than a dozen binary star systems hosting stellar-mass black holes have been discovered in our g...
Accreting black holes emit highly collimated radio jets expanding at speeds approaching light speed....
We present evidence of a direct accretion disk-jet connection in the Galactic microquasar GRS 1915+1...
More than a dozen binary star systems hosting stellar-mass black holes have been discovered in our g...
A subset of ultraluminous X-ray sources (those with luminosities \u3c 10^40 erg s^-1)^1 are thought ...
The Galactic black hole transient GRS 1915+105 is famous for its markedly variable X-ray and radio b...
Recent observations of GRS 1915+105 and GRO J1655+40 reveal superluminal motions in Galactic sources...
Models of jet production in black hole systems suggest that the properties of the accretion disk‚Ã...
During outburst, black-hole X-ray binaries (BHXRBs) exhibit time variability over a wide range of ti...
We propose a simple dynamical model that may account for the observed spectral and temporal properti...
GX 339-4 is a black hole X-ray binary that is a key focus of accretion studies, since it goes into o...
Accretion of gas onto black holes is thought to power the relativistic jets of material ejected from...
We have examined the radio emission characteristics of the micro-quasar GRS 1915+105 during its X-ra...
Fast variability in X-ray binaries has been studied for many decades, which is associated with accre...
We have studied the accretion disk during the radio plateau state and the following superluminal rel...
More than a dozen binary star systems hosting stellar-mass black holes have been discovered in our g...