We explore the evolution in power of black holes of all masses, and their associated jets, within the scheme of an accretion rate-dependent state transition. Below a critical value of the accretion rate all systems are assumed to undergo a transition to a state where the dominant accretion mode is optically thin and radiatively inefficient. In these significantly sub-Eddington systems, the spectral energy distribution is predicted to be dominated by non-thermal emission from a relativistic jet whereas near-Eddington black holes will be dominated instead by emission from the accretion disk. Reasonable candidates for such a sub-Eddington state include x-ray binaries in the hard and quiescent states, the Galactic Center (Sgr A*), LINERs, FR I ...
In recent years, significant evidence for the similar nature of active galactic nuclei (AGN) and X-r...
We present a unified semiquantitative model for the disc-jet coupling in black hole X-ray binary sys...
The ‘Fundamental Plane of black hole accretion’ (FP), a relation between the radio luminosities (LR)...
We explore the evolution in power of black holes of all masses, and their associated jets, within th...
Contains fulltext : 60575.pdf ( ) (Open Access)We explore the evolution in power o...
We explore the evolution in power of black holes of all masses, and their associated jets, within t...
We explore the evolution in power of black holes of all masses, and their associated jets, within t...
Radio and X-ray flux from accreting stellar-mass black holes in the low/hard state display a tight n...
We present a unification scheme for active galactic nuclei (AGN) and black hole X-ray binaries (XRBs...
We present a novel method to measure the accretion rate of radio emitting x-ray binaries (XRBs) and ...
Recent observations suggest that in black hole X-ray binaries jet/outflow formation is related to th...
Contains fulltext : 32296.pdf (publisher's version ) (Open Access)We present a uni...
We present a unified semi-quantitative model for the disc-jet coupling in black hole X-ray binary sy...
Recently a correlation between the radio and X-ray luminosities, LR / L0:7X, was found in black hole...
Accretion and jets occur in many astrophysical systems across a multitude of size and mass scales, a...
In recent years, significant evidence for the similar nature of active galactic nuclei (AGN) and X-r...
We present a unified semiquantitative model for the disc-jet coupling in black hole X-ray binary sys...
The ‘Fundamental Plane of black hole accretion’ (FP), a relation between the radio luminosities (LR)...
We explore the evolution in power of black holes of all masses, and their associated jets, within th...
Contains fulltext : 60575.pdf ( ) (Open Access)We explore the evolution in power o...
We explore the evolution in power of black holes of all masses, and their associated jets, within t...
We explore the evolution in power of black holes of all masses, and their associated jets, within t...
Radio and X-ray flux from accreting stellar-mass black holes in the low/hard state display a tight n...
We present a unification scheme for active galactic nuclei (AGN) and black hole X-ray binaries (XRBs...
We present a novel method to measure the accretion rate of radio emitting x-ray binaries (XRBs) and ...
Recent observations suggest that in black hole X-ray binaries jet/outflow formation is related to th...
Contains fulltext : 32296.pdf (publisher's version ) (Open Access)We present a uni...
We present a unified semi-quantitative model for the disc-jet coupling in black hole X-ray binary sy...
Recently a correlation between the radio and X-ray luminosities, LR / L0:7X, was found in black hole...
Accretion and jets occur in many astrophysical systems across a multitude of size and mass scales, a...
In recent years, significant evidence for the similar nature of active galactic nuclei (AGN) and X-r...
We present a unified semiquantitative model for the disc-jet coupling in black hole X-ray binary sys...
The ‘Fundamental Plane of black hole accretion’ (FP), a relation between the radio luminosities (LR)...