Context. The planet-forming region of protoplanetary disks is cold, dense, and therefore weakly ionized. For this reason, magnetohydrodynamic (MHD) turbulence is thought to be mostly absent, and another mechanism has to be found to explain gas accretion. It has been proposed that magnetized winds, launched from the ionized disk surface, could drive accretion in the presence of a large-scale magnetic field. Aims. The efficiency and the impact of these surface winds on the disk structure is still highly uncertain. We present the first global simulations of a weakly ionized disk that exhibits large-scale magnetized winds. We also study the impact of self-organization, which was previously demonstrated only in non-stratified models. ...
Aims. We investigate the evolution of protoplanetary discs (PPDs) with magnetically driven disc wind...
Aims. We investigate the evolution of protoplanetary discs (PPDs) with magnetically driven disc wind...
We present 3D global MHD simulations of proto-planetary disks calculated with the ZeusMP code. We fo...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audiencePlanets form in the gaseous and dusty disks orbiting young stars. These protop...
International audiencePlanets form in the gaseous and dusty disks orbiting young stars. These protop...
International audiencePlanets form in the gaseous and dusty disks orbiting young stars. These protop...
Magnetized winds may be important in dispersing protoplanetary disks and influencing planet formatio...
The global evolution and dispersal of protoplanetary disks (PPDs) are governed by disk angular-momen...
Aims. We investigate the evolution of protoplanetary discs (PPDs) with magnetically driven disc wind...
Aims. Planet-forming discs are believed to be very weakly turbulent in the regions outside of 1 AU. ...
Aims. Planet-forming discs are believed to be very weakly turbulent in the regions outside of 1 AU. ...
Aims. We investigate the evolution of protoplanetary discs (PPDs) with magnetically driven disc wind...
Aims. We investigate the evolution of protoplanetary discs (PPDs) with magnetically driven disc wind...
We present 3D global MHD simulations of proto-planetary disks calculated with the ZeusMP code. We fo...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audiencePlanets form in the gaseous and dusty disks orbiting young stars. These protop...
International audiencePlanets form in the gaseous and dusty disks orbiting young stars. These protop...
International audiencePlanets form in the gaseous and dusty disks orbiting young stars. These protop...
Magnetized winds may be important in dispersing protoplanetary disks and influencing planet formatio...
The global evolution and dispersal of protoplanetary disks (PPDs) are governed by disk angular-momen...
Aims. We investigate the evolution of protoplanetary discs (PPDs) with magnetically driven disc wind...
Aims. Planet-forming discs are believed to be very weakly turbulent in the regions outside of 1 AU. ...
Aims. Planet-forming discs are believed to be very weakly turbulent in the regions outside of 1 AU. ...
Aims. We investigate the evolution of protoplanetary discs (PPDs) with magnetically driven disc wind...
Aims. We investigate the evolution of protoplanetary discs (PPDs) with magnetically driven disc wind...
We present 3D global MHD simulations of proto-planetary disks calculated with the ZeusMP code. We fo...