International audienceSemi-analytical models of disc outflows have successfully described magnetically driven, self-confined super-Alfvénic jets from near-Keplerian accretion discs. These jet-emitting discs (JEDs) are possible for high levels of disc magnetization μ defined as μ = 2/β, where beta is the usual plasma parameter. In near-equipartition JEDs, accretion is supersonic and jets carry away most of the disc angular momentum. However, these solutions prove difficult to compare with cutting-edge numerical simulations, for the reason that numerical simulations show wind-like outflows but in the domain of small magnetization. In this work, we present for the first time self-similar isothermal solutions for accretion–ejection structures a...
International audienceAstrophysical disks are likely embedded in an ambient vertical magnetic field....
We continue our study of weakly ionized protostellar accretion discs that are threaded by a large-sc...
The fact that self-confined jets are observed around black holes, neutron stars and young forming st...
International audienceSemi-analytical models of disc outflows have successfully described magnetical...
International audienceSemi-analytical models of disc outflows have successfully described magnetical...
We consider the specific case of disc accretion for low viscosity and high electric conductivity of ...
International audienceWell collimated jets are observed from young stellar objects (YSO), active gal...
Context. Astrophysical disks are likely embedded in an ambient vertical magnetic field generated by ...
Magnetorotational turbulence and magnetically driven disc winds are often considered as separate pro...
A large body of theoretical and computational work shows that jets - modelled as magnetized disk win...
25 pages, 11 figures to be published in Lecture Notes in Physics, "Jets from Young Stars: Models and...
The large-scale magnetic field threading an accretion disk plays an important role in launching jets...
Summer school on stellar Physics XIn this lecture I review the theory of magnetized accretion discs ...
During the final growth phase of giant planets, accretion is thought to be controlled by a surroundi...
International audienceAstrophysical disks are likely embedded in an ambient vertical magnetic field....
We continue our study of weakly ionized protostellar accretion discs that are threaded by a large-sc...
The fact that self-confined jets are observed around black holes, neutron stars and young forming st...
International audienceSemi-analytical models of disc outflows have successfully described magnetical...
International audienceSemi-analytical models of disc outflows have successfully described magnetical...
We consider the specific case of disc accretion for low viscosity and high electric conductivity of ...
International audienceWell collimated jets are observed from young stellar objects (YSO), active gal...
Context. Astrophysical disks are likely embedded in an ambient vertical magnetic field generated by ...
Magnetorotational turbulence and magnetically driven disc winds are often considered as separate pro...
A large body of theoretical and computational work shows that jets - modelled as magnetized disk win...
25 pages, 11 figures to be published in Lecture Notes in Physics, "Jets from Young Stars: Models and...
The large-scale magnetic field threading an accretion disk plays an important role in launching jets...
Summer school on stellar Physics XIn this lecture I review the theory of magnetized accretion discs ...
During the final growth phase of giant planets, accretion is thought to be controlled by a surroundi...
International audienceAstrophysical disks are likely embedded in an ambient vertical magnetic field....
We continue our study of weakly ionized protostellar accretion discs that are threaded by a large-sc...
The fact that self-confined jets are observed around black holes, neutron stars and young forming st...