We apply a two-zone MHD model to the jet of M 87. The model consists of an inner relativistic outflow, which is surrounded by a non-relativistic outer disk-wind. The outer disk-wind collimates very well through magnetic self-collimation and confines the inner relativistic jet into a narrow region around the rotation axis. Further, we show by example, that such models reproduce very accurately the observed opening angle of the M 87 jet over a large range from the kiloparsec scale down to the sub-parsec scale.
International audienceContext. High-resolution radio imaging of active galactic nuclei (AGN) has rev...
International audienceAn ideal engine for producing ultrarelativistic jets is a rapidly rotating bla...
We investigate the influence of the accretion disk magnetic flux profile on the collimation of jets ...
We apply a two-zone MHD model to the jet of M87. The model consists of an inner relativistic outflow...
We present self-consistent global steady state MHD models and synthetic optically thin synchrotron e...
Jet formation MHD simulations are presented considering a variety of model setups. The first approac...
We perform axisymmetric relativistic magnetohydrodynamic (MHD) simulations to investigate the accele...
International audienceA brief review is given of some results of our work on the construction of (I)...
The paradigm in which magnetic fields play a crucial role in launching/collimating outflows in many ...
The goal of this paper is to derive signatures of synchrotron radiation from state-of-the-art simula...
Highly relativistic jets are most probably driven by strong magnetic fields and are launched from th...
The magnetic flux distribution is determined by the solution of the Grad-Shafranov equation. With di...
The goal of this paper is to derive signatures of synchrotron radiation from state-of-the-art simula...
We present results of magnetohydrodynamic (MHD) simulations of jet formation and propagation, discus...
International audienceWe present a semi-analytical model using the equations of general relativistic...
International audienceContext. High-resolution radio imaging of active galactic nuclei (AGN) has rev...
International audienceAn ideal engine for producing ultrarelativistic jets is a rapidly rotating bla...
We investigate the influence of the accretion disk magnetic flux profile on the collimation of jets ...
We apply a two-zone MHD model to the jet of M87. The model consists of an inner relativistic outflow...
We present self-consistent global steady state MHD models and synthetic optically thin synchrotron e...
Jet formation MHD simulations are presented considering a variety of model setups. The first approac...
We perform axisymmetric relativistic magnetohydrodynamic (MHD) simulations to investigate the accele...
International audienceA brief review is given of some results of our work on the construction of (I)...
The paradigm in which magnetic fields play a crucial role in launching/collimating outflows in many ...
The goal of this paper is to derive signatures of synchrotron radiation from state-of-the-art simula...
Highly relativistic jets are most probably driven by strong magnetic fields and are launched from th...
The magnetic flux distribution is determined by the solution of the Grad-Shafranov equation. With di...
The goal of this paper is to derive signatures of synchrotron radiation from state-of-the-art simula...
We present results of magnetohydrodynamic (MHD) simulations of jet formation and propagation, discus...
International audienceWe present a semi-analytical model using the equations of general relativistic...
International audienceContext. High-resolution radio imaging of active galactic nuclei (AGN) has rev...
International audienceAn ideal engine for producing ultrarelativistic jets is a rapidly rotating bla...
We investigate the influence of the accretion disk magnetic flux profile on the collimation of jets ...